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US20030013098A1 - Nucleic acid detection employing charged adducts - Google Patents

Nucleic acid detection employing charged adducts
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Publication number
US20030013098A1
US20030013098A1US10/074,328US7432802AUS2003013098A1US 20030013098 A1US20030013098 A1US 20030013098A1US 7432802 AUS7432802 AUS 7432802AUS 2003013098 A1US2003013098 A1US 2003013098A1
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United States
Prior art keywords
oligonucleotide
charge
cleavage
nucleic acid
dna
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Abandoned
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US10/074,328
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Mary Ann Brow
Jeff Grotelueschen Hall
Victor Lyamichev
David Olive
James Prudent
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Individual
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Individual
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Priority claimed from US08/599,491external-prioritypatent/US5846717A/en
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Priority to US10/074,328priorityCriticalpatent/US20030013098A1/en
Publication of US20030013098A1publicationCriticalpatent/US20030013098A1/en
Assigned to GOLDMAN SACHS CREDIT PARTNERS L.P., AS COLLATERAL AGENTreassignmentGOLDMAN SACHS CREDIT PARTNERS L.P., AS COLLATERAL AGENTSECURITY AGREEMENTAssignors: THIRD WAVE TECHNOLOGIES, INC.
Assigned to CYTYC CORPORATION, CYTYC PRENATAL PRODUCTS CORP., CYTYC SURGICAL PRODUCTS II LIMITED PARTNERSHIP, CYTYC SURGICAL PRODUCTS III, INC., CYTYC SURGICAL PRODUCTS LIMITED PARTNERSHIP, THIRD WAVE TECHNOLOGIES, INC., SUROS SURGICAL SYSTEMS, INC., R2 TECHNOLOGY, INC., HOLOGIC, INC., BIOLUCENT, LLC, DIRECT RADIOGRAPHY CORP.reassignmentCYTYC CORPORATIONTERMINATION OF PATENT SECURITY AGREEMENTS AND RELEASE OF SECURITY INTERESTSAssignors: GOLDMAN SACHS CREDIT PARTNERS, L.P., AS COLLATERAL AGENT
Abandonedlegal-statusCriticalCurrent

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Abstract

The present invention relates to means for the detection and characterization of nucleic acid sequences, as well as variations in nucleic acid sequences. The present invention also relates to methods for forming a nucleic acid cleavage structure on a target sequence and cleaving the nucleic acid cleavage structure in a site-specific manner. The 5′ nuclease activity of a variety of enzymes is used to cleave the target-dependent cleavage structure, thereby indicating the presence of specific nucleic acid sequences or specific variations thereof. The present invention further relates to methods and devices for the separation of nucleic acid molecules based by charge.

Description

Claims (52)

We claim:
1. A method of detecting the presence of a target RNA molecule by detecting non-target cleavage products comprising:
a) providing:
i) a cleavage means,
ii) a source of target RNA, said target RNA having a first region, a second region and a third region, wherein said first region is located adjacent to and downstream from said second region and wherein said second region is located adjacent to and downstream from said third region;
iii) a first oligonucleotide having a 5′ and a 3′ portion wherein said 5′ portion of said first oligonucleotide contains a sequence complementary to said second region of said target RNA and wherein said 3′ portion of said first oligonucleotide contains a sequence complementary to said third region of said target RNA;
iv) a second oligonucleotide having a 5′ and a 3′ portion wherein said 5′ portion of said second oligonucleotide contains a sequence complementary to said first region of said target RNA and wherein said 3′ portion of said second oligonucleotide contains a sequence complementary to said second region of said target nucleic acid;
b) mixing said cleavage means, said target RNA, said first oligonucleotide and said second oligonucleotide to create a reaction mixture under reaction conditions such that at least said 3′ portion of said first oligonucleotide is annealed to said target RNA and wherein at least said 5′ portion of said second oligonucleotide is annealed to said target RNA so as to create a cleavage structure and wherein cleavage of said cleavage structure occurs to generate non-target cleavage products; and
c) detecting said non-target cleavage products.
2. The method ofclaim 1 wherein said reaction conditions comprise a cleavage reaction temperature which is less than the melting temperature of said first oligonucleotide when annealed to said target RNA and greater than the melting temperature of said 3′ portion of said first oligonucleotide.
3. The method ofclaim 1 wherein said reaction temperature is between approximately 40 and 65 degrees centigrade.
4. The method ofclaim 1 wherein said first and second oligonucleotides comprise DNA.
5. The method ofclaim 1 wherein said cleavage means comprises a thermostable 5′ nuclease.
6. The method ofclaim 5 wherein a portion of the amino acid sequence of said nuclease is homologous to a portion of the amino acid sequence of a thermostable DNA polymerase derived from a thermophilic organism.
7. The method ofclaim 6 wherein said organism is selected from the group consisting ofThermus aquaticus, Thermus flavusandThermus thermophilus.
8. The method ofclaim 7 wherein said nuclease is encoded by a DNA sequence selected from the group consisting of SEQ ID NOS:1-3, 9, 10, 12, 21, 30 and 31.
9. The method ofclaim 1 wherein said first oligonucleotide is completely complementary to said target RNA and wherein said second oligonucleotide is completely complementary to said target RNA.
10. The method ofclaim 1 wherein said first oligonucleotide is partially complementary to said target RNA.
11. The method ofclaim 1 wherein said second oligonucleotide is partially complementary to said target RNA.
12. The method ofclaim 1 wherein said detection of said non-target cleavage products comprises electrophoretic separation of the products of said reaction followed by visualization of said separated non-target cleavage products.
13. The method ofclaim 1 wherein said source of target RNA comprises a sample selected from the group comprising blood, saliva, cerebral spinal fluid, pleural fluid, milk, lymph, sputum and semen.
14. The method ofclaim 1 wherein said reaction conditions comprise providing a source of divalent cations.
15. The method ofclaim 14 wherein said divalent cation is selected from the group comprising Mn2+ and Mg2+ ions.
16. A method of separating nucleic acid molecules, comprising:
a) providing:
i) a charge-balanced oligonucleotide and
ii) a reactant;
b) mixing said charge-balanced oligonucleotide with said reactant to create a reaction mixture under conditions such that a charge-unbalanced oligonucleotide is produced; and
c) separating said charge-unbalanced oligonucleotide from said reaction mixture.
17. The method ofclaim 16, wherein said reactant comprises a cleavage means.
18. The method ofclaim 17, wherein said cleavage means is an endonuclease.
19. The method ofclaim 17, wherein said cleavage means is an exonuclease.
20. The method ofclaim 16, wherein said reactant comprises a polymerization means.
21. The method ofclaim 16, wherein said reactant comprises a ligation means.
22. The method ofclaim 16, wherein said charge-balanced oligonucleotide comprises a label.
23. The method ofclaim 16, wherein said charge-balanced oligonucleotide comprises one or more phosphonate groups.
24. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net neutral charge and said charge-unbalanced oligonucleotide has a net positive charge.
25. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net neutral charge and said charge-unbalanced oligonucleotide has a net negative charge.
26. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net negative charge and said charge-unbalanced oligonucleotide has a net positive charge.
27. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net negative charge and said charge-unbalanced oligonucleotide has a net neutral charge.
28. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net positive charge and said charge-unbalanced oligonucleotide has a net neutral charge.
29. The method ofclaim 16, wherein said charge-balanced oligonucleotide has a net positive charge and said charge-unbalanced oligonucleotide has a net negative charge.
30. The method ofclaim 17, wherein said charge-balanced oligonucleotide comprises DNA containing one or more positively charged adducts.
31. The method ofclaim 30, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net positive charge.
32. The method ofclaim 30, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net neutral charge.
33. The method ofclaim 30, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net negative charge.
34. The method ofclaim 17, wherein said charge-balanced oligonucleotide comprises DNA containing one or more negatively charged adducts.
35. The method ofclaim 34, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net negative charge.
36. The method ofclaim 34, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net neutral charge.
37. The method ofclaim 34, wherein said cleavage means removes one or more nucleotides from said charge-balanced oligonucleotide to produce said charge-unbalanced oligonucleotide, wherein said charge-unbalanced oligonucleotide has a net negative charge.
38. The method ofclaim 30, wherein said one or more positively charged adducts are selected from the group consisting of indodicarbocyanine dye amidites, amino-substituted nucleotides, ethidium bromide, ethidium homodimer, (1,3-propanediamino)propidium, (diethylenetriamino)propidium, thiazole orange, (N-N′-tetramethyl-1,3-propanediamino)propyl thiazole orange, (N-N′-tetramethyl-1,2-ethanediamino)propyl thiazole orange, thiazole orange-thiazole orange homodimer (TOTO), thiazole orande-thiazole blue heterodimer (TOTAB), thiazole orange-ethidium heterodimer 1 (TOED1), thiazole orange-ethidium heterodimer 2 (TOED2) and florescien-ethidium heterodimer (FED).
39. The method ofclaim 16, wherein said separating comprises subjecting said reaction mixture to an electrical field comprising a positive pole and a negative pole under conditions such that said charge-unbalanced oligonucleotide migrates toward said positive pole.
40. The method ofclaim 16, wherein said separating comprises subjecting said reaction mixture to an electrical field comprising a positive pole and a negative pole under conditions such that said charge-unbalanced oligonucleotide migrates toward said negative pole.
41. The method ofclaim 39 further comprising detecting the presence of said separated charge-unbalanced oligonucleotide.
42. A method of detecting cleaved nucleic molecules, comprising:
a) providing:
i) a homogeneous plurality of charge-balanced oligonucleotides;
ii) a sample suspected of containing a target nucleic acid having a sequence comprising a first region complementary to said charge-balanced oligonucleotide;
iii) a cleavage means; and
iv) a reaction vessel;
b) adding to said vessel, in any order, said sample, said charge-balanced oligonucleotides and said cleavage means to create a reaction mixture under conditions such that a portion of said charge-balanced oligonucleotides binds to said complementary target nucleic acid to create a bound population, and such that said cleavage means cleaves at least a portion of said bound population of charge-balanced oligonucleotides to produce a population of unbound, charge-unbalanced oligonucleotides; and
c) separating said unbound, charge-unbalanced oligonucleotides from sid reaction mixture.
43. The method ofclaim 42 further comprising providing a homogeneous plurality of oligonucleotides complementary to a second region of said target nucleic acid, wherein said oligonucleotides are capable of binding to said target nucleic acid upstream of said charge-balanced oligonucleotides.
44. The method ofclaim 43, wherein said first and said second region of said target nucleic acid share a region of overlap.
45. The method ofclaim 42, wherein said cleavage means comprises a thermostable 5′ nuclease.
46. The method ofclaim 45 wherein a portion of the amino acid sequence of said nuclease is homologous to a portion of the amino acid sequence of a thermostable DNA polymerase derived from a thermophilic organism.
47. The method ofclaim 46 wherein said organism is selected from the group consisting ofThermus aquaticus, Thermus flavusandThermus thermophilus.
48. The method ofclaim 47 wherein said nuclease is encoded by a DNA sequence selected from the group consisting of SEQ ID NOS:1-3, 9, 10, 12, 21, 30 and 31.
49. The method ofclaim 42, wherein said target nucleic acid comprises single-stranded DNA.
50. The method ofclaim 42 wherein said target nucleic acid comprises double-stranded DNA and prior to the addition of said cleavage means said reaction mixture is treated such that said double-stranded DNA is rendered substantially single-stranded.
51. The method of claim50 wherein said treatment to render said double-stranded DNA is rendered substantially single-stranded by increasing the temperature.
52. The method ofclaim 42 wherein said target nucleic acid comprises RNA.
US10/074,3281996-01-242002-02-12Nucleic acid detection employing charged adductsAbandonedUS20030013098A1 (en)

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US08/599,491US5846717A (en)1996-01-241996-01-24Detection of nucleic acid sequences by invader-directed cleavage
US08/682,853US6001567A (en)1996-01-241996-07-12Detection of nucleic acid sequences by invader-directed cleavage
US09/333,145US6706471B1 (en)1996-01-241999-06-14Detection of nucleic acid sequences by invader-directed cleavage
US10/074,328US20030013098A1 (en)1996-01-242002-02-12Nucleic acid detection employing charged adducts

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20070212726A1 (en)*1999-10-292007-09-13Stratagene CaliforniaMethods for detection of a target nucleic acid
WO2009100447A3 (en)*2008-02-082009-11-05The Regents Of The University Of CaliforniaDetection of degradative enzymes and biomolecules in bodily fluids
US20150193390A1 (en)*2012-12-032015-07-09Google Inc.Visited hyperlink appearance based on user activity
WO2025090922A1 (en)*2023-10-272025-05-01University Of MassachusettsMethods of preparing a catalyst for rna production

Families Citing this family (54)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20080220425A1 (en)*1996-01-242008-09-11Third Wave Technologies, Inc.Methods and Compositions for Detecting Target Sequences
US20080160524A1 (en)*1996-01-242008-07-03Third Wave Technologies, Inc.Methods and Compositions for Detecting Target Sequences
US6780982B2 (en)*1996-07-122004-08-24Third Wave Technologies, Inc.Charge tags and the separation of nucleic acid molecules
GB0205455D0 (en)*2002-03-072002-04-24Molecular Sensing PlcNucleic acid probes, their synthesis and use
WO2005021725A2 (en)*2003-08-272005-03-10Third Wave Technologies, Inc.Nucleic acid analysis method conducted in small reaction volumes
CN103884698B (en)2004-06-072017-04-12先锋生物科技股份有限公司Optical lens system and method for microfluidic devices
ATE526421T1 (en)2005-02-142011-10-15Univ Iowa Res Found METHODS AND REAGENTS FOR THE TREATMENT AND DIAGNOSIS OF AGE-RELATED MACULAR DEGENERATION
US20090130666A1 (en)*2005-05-272009-05-21Applera CorporationCytometric system including nucleic acid sequence amplification, and method
EP2703499A1 (en)2005-06-022014-03-05Fluidigm CorporationAnalysis using microfluidic partitioning devices to generate single cell samples
CN101351542A (en)*2005-07-152009-01-21阿普尔拉公司Fluid processing device and method
WO2007021807A1 (en)*2005-08-122007-02-22Schering CorporationMcp1 fusions
CN101321877B (en)2005-10-032013-04-10应用生物系统有限责任公司 Compositions, methods and kits for amplifying nucleic acids
EP2479284B1 (en)2006-07-132017-09-20University of Iowa Research FoundationMethods and reagents for treatment and diagnosis of vascular disorders and age-related macular degeneration
US7772390B1 (en)2006-07-182010-08-10The Regents Of The University Of CaliforniaLipid mediated nucleic acid synthesis
US8055034B2 (en)2006-09-132011-11-08Fluidigm CorporationMethods and systems for image processing of microfluidic devices
US8050516B2 (en)*2006-09-132011-11-01Fluidigm CorporationMethods and systems for determining a baseline during image processing
WO2008067552A2 (en)*2006-11-302008-06-05Fluidigm CorporationMethod and apparatus for biological sample analysis
US8524217B2 (en)2010-05-112013-09-03Merck Sharp & Dohme Corp.MCP1-Ig fusion variants
WO2012040619A2 (en)2010-09-242012-03-29Massachusetts Eye And Ear InfirmaryMethods and compositions for prognosing and/or detecting age-related macular degeneration
US8916344B2 (en)2010-11-152014-12-23Exact Sciences CorporationMethylation assay
US8715937B2 (en)2010-11-152014-05-06Exact Sciences CorporationMutation detection assay
US8361720B2 (en)2010-11-152013-01-29Exact Sciences CorporationReal time cleavage assay
WO2013058868A2 (en)2011-10-182013-04-25Exact Sciences CorporationMultiplexed kras mutation detection assay
SG11201407901PA (en)2012-05-212015-01-29Fluidigm CorpSingle-particle analysis of particle populations
WO2014158628A1 (en)2013-03-142014-10-02Hologic, Inc.Compositions and methods for analysis of nucleic acid molecules
KR102423377B1 (en)2013-08-052022-07-25트위스트 바이오사이언스 코포레이션De novo synthesized gene libraries
AU2016205179B2 (en)2015-01-092021-06-17Gen-Probe IncorporatedMethods and compositions for diagnosing bacterial vaginosis
US10669304B2 (en)2015-02-042020-06-02Twist Bioscience CorporationMethods and devices for de novo oligonucleic acid assembly
US10550438B2 (en)2015-03-162020-02-04Gen-Probe IncorporatedMethods and compositions for detecting bacterial nucleic acid
US9981239B2 (en)2015-04-212018-05-29Twist Bioscience CorporationDevices and methods for oligonucleic acid library synthesis
CA2998169A1 (en)2015-09-182017-03-23Twist Bioscience CorporationOligonucleic acid variant libraries and synthesis thereof
KR102794025B1 (en)2015-09-222025-04-09트위스트 바이오사이언스 코포레이션 Flexible substrates for nucleic acid synthesis
EP3384077A4 (en)2015-12-012019-05-08Twist Bioscience Corporation FUNCTIONALIZED SURFACES AND THEIR PREPARATION
SG11201901563UA (en)2016-08-222019-03-28Twist Bioscience CorpDe novo synthesized nucleic acid libraries
US10417457B2 (en)2016-09-212019-09-17Twist Bioscience CorporationNucleic acid based data storage
EA201991262A1 (en)2016-12-162020-04-07Твист Байосайенс Корпорейшн LIBRARIES OF OPTIONS OF IMMUNOLOGICAL SYNAPSIS AND THEIR SYNTHESIS
CN110892485B (en)2017-02-222024-03-22特韦斯特生物科学公司Nucleic acid-based data storage
CA3056388A1 (en)2017-03-152018-09-20Twist Bioscience CorporationVariant libraries of the immunological synapse and synthesis thereof
CA3059977C (en)2017-05-192024-02-13Gen-Probe IncorporatedDried compositions containing flap endonuclease
WO2018226798A1 (en)2017-06-072018-12-13Gen-Probe IncorporatedDetecting babesia species nucleic acid in a sample
IL271205B2 (en)2017-06-122025-02-01Twist Bioscience CorpMethods for seamless nucleic acid assembly
WO2018231864A1 (en)2017-06-122018-12-20Twist Bioscience CorporationMethods for seamless nucleic acid assembly
US11407837B2 (en)2017-09-112022-08-09Twist Bioscience CorporationGPCR binding proteins and synthesis thereof
KR102637566B1 (en)2017-10-202024-02-16트위스트 바이오사이언스 코포레이션 Heated nanowells for polynucleotide synthesis
SG11202006460SA (en)2018-01-042020-08-28Twist Bioscience CorpDna-based digital information storage
EP3814497A4 (en)2018-05-182022-03-02Twist Bioscience Corporation POLYNUCLEOTIDES, REAGENTS, AND METHODS FOR NUCLEIC ACID HYBRIDIZATION
EP3841222A1 (en)2018-08-242021-06-30Gen-Probe IncorporatedCompositions and methods for detecting bacterial nucleic acid and diagnosing bacterial vaginosis
TW202030333A (en)2018-12-202020-08-16美商簡 探針公司Compositions and methods for detecting plasmodium species nucleic acid
CN119708086A (en)2018-12-262025-03-28特韦斯特生物科学公司Highly accurate de novo polynucleotide synthesis
US11492727B2 (en)2019-02-262022-11-08Twist Bioscience CorporationVariant nucleic acid libraries for GLP1 receptor
CN113785057A (en)2019-02-262021-12-10特韦斯特生物科学公司 Variant nucleic acid libraries for antibody optimization
WO2020257612A1 (en)2019-06-212020-12-24Twist Bioscience CorporationBarcode-based nucleic acid sequence assembly
WO2021061829A1 (en)2019-09-232021-04-01Twist Bioscience CorporationVariant nucleic acid libraries for crth2
WO2021061842A1 (en)2019-09-232021-04-01Twist Bioscience CorporationVariant nucleic acid libraries for single domain antibodies

Citations (43)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4511502A (en)*1982-12-221985-04-16Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4511503A (en)*1982-12-221985-04-16Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4512922A (en)*1982-12-221985-04-23Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4518526A (en)*1982-12-221985-05-21Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4683202A (en)*1985-03-281987-07-28Cetus CorporationProcess for amplifying nucleic acid sequences
US4683195A (en)*1986-01-301987-07-28Cetus CorporationProcess for amplifying, detecting, and/or-cloning nucleic acid sequences
US4683194A (en)*1984-05-291987-07-28Cetus CorporationMethod for detection of polymorphic restriction sites and nucleic acid sequences
US4775619A (en)*1984-10-161988-10-04Chiron CorporationPolynucleotide determination with selectable cleavage sites
US4818680A (en)*1985-12-181989-04-04Mary CollinsMethod and kit involving displacement and rehybridization of labeled polynucleotide
US4876187A (en)*1985-12-051989-10-24Meiogenics, Inc.Nucleic acid compositions with scissile linkage useful for detecting nucleic acid sequences
US5011769A (en)*1985-12-051991-04-30Meiogenics U.S. Limited PartnershipMethods for detecting nucleic acid sequences
US5030557A (en)*1987-11-241991-07-09Ml Technology VentureMeans and method for enhancing nucleic acid hybridization
US5108892A (en)*1989-08-031992-04-28Promega CorporationMethod of using a taq dna polymerase without 5'-3'-exonuclease activity
US5118605A (en)*1984-10-161992-06-02Chiron CorporationPolynucleotide determination with selectable cleavage sites
US5144019A (en)*1989-06-211992-09-01City Of HopeRibozyme cleavage of HIV-I RNA
US5210015A (en)*1990-08-061993-05-11Hoffman-La Roche Inc.Homogeneous assay system using the nuclease activity of a nucleic acid polymerase
US5403711A (en)*1987-11-301995-04-04University Of Iowa Research FoundationNucleic acid hybridization and amplification method for detection of specific sequences in which a complementary labeled nucleic acid probe is cleaved
US5407795A (en)*1991-12-231995-04-18Chiron CorporationCMV probes for use in solution phase sandwich
US5422253A (en)*1992-12-071995-06-06Wisconsin Alumni Research FoundationMethod of site specific nucleic acid cleavage
US5427930A (en)*1990-01-261995-06-27Abbott LaboratoriesAmplification of target nucleic acids using gap filling ligase chain reaction
US5470705A (en)*1992-04-031995-11-28Applied Biosystems, Inc.Probe composition containing a binding domain and polymer chain and methods of use
US5494810A (en)*1990-05-031996-02-27Cornell Research Foundation, Inc.Thermostable ligase-mediated DNA amplifications system for the detection of genetic disease
US5514543A (en)*1992-04-031996-05-07Applied Biosystems, Inc.Method and probe composition for detecting multiple sequences in a single assay
US5541311A (en)*1992-12-071996-07-30Third Wave Technologies, Inc.Nucleic acid encoding synthesis-deficient thermostable DNA polymerase
US5545729A (en)*1994-12-221996-08-13Hybridon, Inc.Stabilized ribozyme analogs
US5601976A (en)*1987-12-251997-02-11Wakunaga Seiyaku Kabushiki KaishaMethod for detecting target nucleic acid in specimen
US5614402A (en)*1992-12-071997-03-25Third Wave Technologies, Inc.5' nucleases derived from thermostable DNA polymerase
US5660988A (en)*1993-11-171997-08-26Id Biomedical CorporationCycling probe cleavage detection of nucleic acid sequences
US5691146A (en)*1995-05-051997-11-25The Perkin Elmer CorporationMethods for combined PCR amplification and hybridization probing using doubly labeled fluorescent probes
US5698400A (en)*1994-04-251997-12-16Avitech Diagnostics, Inc.Detection of mutation by resolvase cleavage
US5719028A (en)*1992-12-071998-02-17Third Wave Technologies Inc.Cleavase fragment length polymorphism
US5783392A (en)*1994-11-231998-07-21Boehringer Mannheim GmbhMethod for the particularly sensitive detection of nucleic acids
US5792614A (en)*1994-12-231998-08-11Dade Behring Marburg GmbhDetection of nucleic acids by target-catalyzed product formation
US5830664A (en)*1994-07-161998-11-03Boehringer Mannheim GmbhMethod for the detection of target nucleic acid
US5843669A (en)*1996-01-241998-12-01Third Wave Technologies, Inc.Cleavage of nucleic acid acid using thermostable methoanococcus jannaschii FEN-1 endonucleases
US5843654A (en)*1992-12-071998-12-01Third Wave Technologies, Inc.Rapid detection of mutations in the p53 gene
US5874283A (en)*1995-05-301999-02-23John Joseph HarringtonMammalian flap-specific endonuclease
US5882867A (en)*1995-06-071999-03-16Dade Behring Marburg GmbhDetection of nucleic acids by formation of template-dependent product
US5888780A (en)*1992-12-071999-03-30Third Wave Technologies, Inc.Rapid detection and identification of nucleic acid variants
US5916426A (en)*1993-12-171999-06-29The Perkin-Elmer CorporationPolymers for separation of biomolecules by capillary electrophoresis
US5985557A (en)*1996-01-241999-11-16Third Wave Technologies, Inc.Invasive cleavage of nucleic acids
US5994069A (en)*1996-01-241999-11-30Third Wave Technologies, Inc.Detection of nucleic acids by multiple sequential invasive cleavages
US6090606A (en)*1996-01-242000-07-18Third Wave Technologies, Inc.Cleavage agents

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
EP0365627B1 (en)1988-03-241993-12-22University Of Iowa Research FoundationCatalytic hybridization systems for the detection of nucleic acid sequences based on their activity as cofactors in catalytic reactions in which a complementary labeled nucleic acid probe is cleaved
JP2955759B2 (en)1988-07-201999-10-04セゲブ・ダイアグノスティックス・インコーポレイテッド Methods for amplifying and detecting nucleic acid sequences
DE69022180T2 (en)1989-05-311996-02-01Amoco Corp UNIVERSAL NUCLEIC ACID PROBE FOR EUBACTERIA AND METHODS.
CA1337639C (en)1989-08-011995-11-28Joseph Eugene CelebuskiDna probe assay using neutrally charged probe strands
SG46627A1 (en)1989-12-221998-02-20Hoffmann La RocheRecombinant expression vectors and purification methods for thermus thermophilus dna polymerase
DK0550687T3 (en)1990-09-281999-12-13Hoffmann La Roche 5 'to 3' exonuclease mutations of thermostable DNA polymerases
US6083686A (en)1990-10-262000-07-04Johnson & Johnson Clinical Diagnostic Systems, Inc.Increased production of Thermus aquaticus DNA polymerase in E. coli

Patent Citations (56)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4511503A (en)*1982-12-221985-04-16Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4512922A (en)*1982-12-221985-04-23Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4518526A (en)*1982-12-221985-05-21Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4511502A (en)*1982-12-221985-04-16Genentech, Inc.Purification and activity assurance of precipitated heterologous proteins
US4683194A (en)*1984-05-291987-07-28Cetus CorporationMethod for detection of polymorphic restriction sites and nucleic acid sequences
US5380833A (en)*1984-10-161995-01-10Chiron CorporationPolynucleotide reagents containing selectable cleavage sites
US4775619A (en)*1984-10-161988-10-04Chiron CorporationPolynucleotide determination with selectable cleavage sites
US5118605A (en)*1984-10-161992-06-02Chiron CorporationPolynucleotide determination with selectable cleavage sites
US4683202B1 (en)*1985-03-281990-11-27Cetus Corp
US4683202A (en)*1985-03-281987-07-28Cetus CorporationProcess for amplifying nucleic acid sequences
US5011769A (en)*1985-12-051991-04-30Meiogenics U.S. Limited PartnershipMethods for detecting nucleic acid sequences
US4876187A (en)*1985-12-051989-10-24Meiogenics, Inc.Nucleic acid compositions with scissile linkage useful for detecting nucleic acid sequences
US4818680A (en)*1985-12-181989-04-04Mary CollinsMethod and kit involving displacement and rehybridization of labeled polynucleotide
US4683195B1 (en)*1986-01-301990-11-27Cetus Corp
US4683195A (en)*1986-01-301987-07-28Cetus CorporationProcess for amplifying, detecting, and/or-cloning nucleic acid sequences
US5030557A (en)*1987-11-241991-07-09Ml Technology VentureMeans and method for enhancing nucleic acid hybridization
US5403711A (en)*1987-11-301995-04-04University Of Iowa Research FoundationNucleic acid hybridization and amplification method for detection of specific sequences in which a complementary labeled nucleic acid probe is cleaved
US5601976A (en)*1987-12-251997-02-11Wakunaga Seiyaku Kabushiki KaishaMethod for detecting target nucleic acid in specimen
US5144019A (en)*1989-06-211992-09-01City Of HopeRibozyme cleavage of HIV-I RNA
US5108892A (en)*1989-08-031992-04-28Promega CorporationMethod of using a taq dna polymerase without 5'-3'-exonuclease activity
US5427930A (en)*1990-01-261995-06-27Abbott LaboratoriesAmplification of target nucleic acids using gap filling ligase chain reaction
US5494810A (en)*1990-05-031996-02-27Cornell Research Foundation, Inc.Thermostable ligase-mediated DNA amplifications system for the detection of genetic disease
US5487972A (en)*1990-08-061996-01-30Hoffmann-La Roche Inc.Nucleic acid detection by the 5'-3'exonuclease activity of polymerases acting on adjacently hybridized oligonucleotides
US5210015A (en)*1990-08-061993-05-11Hoffman-La Roche Inc.Homogeneous assay system using the nuclease activity of a nucleic acid polymerase
US5407795A (en)*1991-12-231995-04-18Chiron CorporationCMV probes for use in solution phase sandwich
US5807682A (en)*1992-04-031998-09-15The Perkin-Elmer CorporationProbe composition containing a binding domain and polymer chain and method of use
US5470705A (en)*1992-04-031995-11-28Applied Biosystems, Inc.Probe composition containing a binding domain and polymer chain and methods of use
US5514543A (en)*1992-04-031996-05-07Applied Biosystems, Inc.Method and probe composition for detecting multiple sequences in a single assay
US5777096A (en)*1992-04-031998-07-07The Perkin-Elmer CorporationProbe composition containing a binding domain and polymer chain and methods of use
US5703222A (en)*1992-04-031997-12-30The Perkin-Elmer CorporationProbe composition containing a binding domain and polymer chain and methods of use
US5541311A (en)*1992-12-071996-07-30Third Wave Technologies, Inc.Nucleic acid encoding synthesis-deficient thermostable DNA polymerase
US5888780A (en)*1992-12-071999-03-30Third Wave Technologies, Inc.Rapid detection and identification of nucleic acid variants
US5843654A (en)*1992-12-071998-12-01Third Wave Technologies, Inc.Rapid detection of mutations in the p53 gene
US5691142A (en)*1992-12-071997-11-25Third Wavetechnologies, Inc.Detection of target nucleic acid molecules using synthesis-deficient thermostable DNA polymerase
US5837450A (en)*1992-12-071998-11-17Third Wave Technologies, Inc.Detection of target nucleic acid molecules using thermostable 5' nuclease
US5614402A (en)*1992-12-071997-03-25Third Wave Technologies, Inc.5' nucleases derived from thermostable DNA polymerase
US5719028A (en)*1992-12-071998-02-17Third Wave Technologies Inc.Cleavase fragment length polymorphism
US5422253A (en)*1992-12-071995-06-06Wisconsin Alumni Research FoundationMethod of site specific nucleic acid cleavage
US5795763A (en)*1992-12-071998-08-18Third Wave Technologies, Inc.Synthesis-deficient thermostable DNA polymerase
US5660988A (en)*1993-11-171997-08-26Id Biomedical CorporationCycling probe cleavage detection of nucleic acid sequences
US5916426A (en)*1993-12-171999-06-29The Perkin-Elmer CorporationPolymers for separation of biomolecules by capillary electrophoresis
US5698400A (en)*1994-04-251997-12-16Avitech Diagnostics, Inc.Detection of mutation by resolvase cleavage
US5830664A (en)*1994-07-161998-11-03Boehringer Mannheim GmbhMethod for the detection of target nucleic acid
US5783392A (en)*1994-11-231998-07-21Boehringer Mannheim GmbhMethod for the particularly sensitive detection of nucleic acids
US5545729A (en)*1994-12-221996-08-13Hybridon, Inc.Stabilized ribozyme analogs
US5792614A (en)*1994-12-231998-08-11Dade Behring Marburg GmbhDetection of nucleic acids by target-catalyzed product formation
US5691146A (en)*1995-05-051997-11-25The Perkin Elmer CorporationMethods for combined PCR amplification and hybridization probing using doubly labeled fluorescent probes
US5874283A (en)*1995-05-301999-02-23John Joseph HarringtonMammalian flap-specific endonuclease
US5882867A (en)*1995-06-071999-03-16Dade Behring Marburg GmbhDetection of nucleic acids by formation of template-dependent product
US5846717A (en)*1996-01-241998-12-08Third Wave Technologies, Inc.Detection of nucleic acid sequences by invader-directed cleavage
US5843669A (en)*1996-01-241998-12-01Third Wave Technologies, Inc.Cleavage of nucleic acid acid using thermostable methoanococcus jannaschii FEN-1 endonucleases
US5985557A (en)*1996-01-241999-11-16Third Wave Technologies, Inc.Invasive cleavage of nucleic acids
US5994069A (en)*1996-01-241999-11-30Third Wave Technologies, Inc.Detection of nucleic acids by multiple sequential invasive cleavages
US6001567A (en)*1996-01-241999-12-14Third Wave Technologies, Inc.Detection of nucleic acid sequences by invader-directed cleavage
US6090543A (en)*1996-01-242000-07-18Third Wave Technologies, Inc.Cleavage of nucleic acids
US6090606A (en)*1996-01-242000-07-18Third Wave Technologies, Inc.Cleavage agents

Cited By (9)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20070212726A1 (en)*1999-10-292007-09-13Stratagene CaliforniaMethods for detection of a target nucleic acid
WO2009100447A3 (en)*2008-02-082009-11-05The Regents Of The University Of CaliforniaDetection of degradative enzymes and biomolecules in bodily fluids
US20110065127A1 (en)*2008-02-082011-03-17The Regents of the University of California a Cali fornia corporationDetection of Degradative Enzymes and Biomolecules in Bodily Fluids
US8507218B2 (en)2008-02-082013-08-13The Regents Of The University Of CaliforniaDetection of degradative enzymes in bodily fluids
US8940866B2 (en)2008-02-082015-01-27The Regents Of The University Of CaliforniaDetection of degradative enzymes and biomolecules in bodily fluids
US9222119B2 (en)2008-02-082015-12-29The Regents Of The University Of CaliforniaDetection of degradative enzymes and biomolecules in bodily fluids
US9733241B2 (en)2008-02-082017-08-15The Regents Of The University Of CaliforniaDetection of degradative enzymes and biomolecules in bodily fluids
US20150193390A1 (en)*2012-12-032015-07-09Google Inc.Visited hyperlink appearance based on user activity
WO2025090922A1 (en)*2023-10-272025-05-01University Of MassachusettsMethods of preparing a catalyst for rna production

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