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US20190106739A1 - Chemical ligation dependent probe amplification (clpa) - Google Patents

Chemical ligation dependent probe amplification (clpa)
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Publication number
US20190106739A1
US20190106739A1US15/985,282US201815985282AUS2019106739A1US 20190106739 A1US20190106739 A1US 20190106739A1US 201815985282 AUS201815985282 AUS 201815985282AUS 2019106739 A1US2019106739 A1US 2019106739A1
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United States
Prior art keywords
ligation
probe
target
probes
sequence
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US15/985,282
Inventor
Robert Terbrueggen
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DxTerity Diagnostics Inc
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DxTerity Diagnostics Inc
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Publication date
Application filed by DxTerity Diagnostics IncfiledCriticalDxTerity Diagnostics Inc
Priority to US15/985,282priorityCriticalpatent/US20190106739A1/en
Publication of US20190106739A1publicationCriticalpatent/US20190106739A1/en
Assigned to DXTERITY DIAGNOSTICS INCORPORATEDreassignmentDXTERITY DIAGNOSTICS INCORPORATEDASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: TERBRUEGGEN, ROBERT
Abandonedlegal-statusCriticalCurrent

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Abstract

The present invention provides compositions, apparatuses and methods for detecting one or more nucleic acid targets present in a sample. Methods of the invention include utilizing two or more oligonucleotide probes that reversibly bind a target nucleic acid in close proximity to each other and possess complementary reactive ligation moieties. When such probes have bound to the target in the proper orientation, they are able to undergo a spontaneous chemical ligation reaction that yields a ligated oligonucleotide product. In one aspect, the ligation product is of variable length that correlates with a particular target. Following chemical ligation, the probes may be amplified and detected by capillary electrophoresis or microarray analysis.

Description

Claims (20)

1. A method for detecting in a sample, comprising a plurality of sample nucleic acids of different sequence, the presence of at least one specific target nucleic acid sequence comprising a first and a second target domain, the domains located essentially adjacent to one another, comprising the steps of:
a) contacting the sample nucleic acids with a plurality of different probes sets, each probe set comprising
i. a first ligation probe comprising:
1) a first probe domain substantially complementary to said first target domain; and
2) a first non-complementary region being essentially non-complementary to the said target nucleic acid
3) a 5′-ligation moiety; and
ii. second ligation probe comprising:
1) a second probe domain substantially complementary to said second target domain;
2) a second non-complementary region, being essentially non-complementary to the said target nucleic acid
3) a 3′ ligation moiety;
wherein at least one of said ligation probe comprises a variable spacer sequence; and
b) ligating said first and second ligation probes in the absence of a ligase enzyme to form a ligation product;
c) amplifying said ligation product; and
d) detecting the presence of said ligation product.
14. A method for detecting in a sample, comprising a plurality of sample nucleic acids of different sequence, the presence of at least one specific target nucleic acid sequence comprising a first and a second target domain, the domains located essentially adjacent to one another, comprising the steps of:
a) Contacting the sample nucleic acids with a plurality of different probes sets, each probe set comprising
i) a first ligation probe comprising:
1) a first probe domain substantially complementary to said first target domain; and
2) a first non-complementary region being essentially non-complementary to the said target nucleic acid
3) a 5′-ligation moiety; and
ii) second ligation probe comprising:
1) a second probe domain substantially complementary to said second target domain;
2) a second non-complementary region, being essentially non-complementary to the said target nucleic acid; and
3) a 3′ ligation moiety;
wherein at least one of said first and second ligation probes further comprises an anchor sequence
b) capturing said ligation product on a microarray substrate comprising a capture probe substantially complementary to said anchor sequence; and
c) detecting the presence of said ligated product.
16. A method for detecting in a sample, comprising a plurality of sample nucleic acids of different sequence, the presence of at least one specific target nucleic acid sequence comprising a first and a second target domain, and a third domain located between the first and second domains, the domains located essentially adjacent to one another, comprising the steps of:
b) contacting the sample nucleic acids with a plurality of different probes sets, each probe set comprising
i. a first ligation probe comprising:
1) a first probe domain substantially complementary to said first target domain; and
2) a first non-complementary region being essentially non-complementary to the said target nucleic acid
3) a 5′-ligation moiety; and
ii. second ligation probe comprising:
1) a second probe domain substantially complementary to said second target domain;
2) a second non-complementary region, being essentially non-complementary to the said target nucleic acid
3) a 3′ ligation moiety;
iii. a third ligation probe comprising
1) a third probe domain substantially complementary to the said third target domain
2) a 3′ and a 5′ ligation moiety;
b) ligating said first ligation probe, said second ligation probe, and said third ligation probe in the absence of a ligase enzyme to form a ligation product;
c) amplifying said ligation product; and
c) detecting the presence of said ligated product.
US15/985,2822009-04-012018-05-21Chemical ligation dependent probe amplification (clpa)AbandonedUS20190106739A1 (en)

Priority Applications (1)

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US15/985,282US20190106739A1 (en)2009-04-012018-05-21Chemical ligation dependent probe amplification (clpa)

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US16583909P2009-04-012009-04-01
US12/798,108US9976177B2 (en)2009-04-012010-03-29Chemical ligation dependent probe amplification (CLPA)
US15/985,282US20190106739A1 (en)2009-04-012018-05-21Chemical ligation dependent probe amplification (clpa)

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US12/798,108ContinuationUS9976177B2 (en)2009-04-012010-03-29Chemical ligation dependent probe amplification (CLPA)

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US20190106739A1true US20190106739A1 (en)2019-04-11

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US12/798,108Active2034-01-05US9976177B2 (en)2009-04-012010-03-29Chemical ligation dependent probe amplification (CLPA)
US15/985,282AbandonedUS20190106739A1 (en)2009-04-012018-05-21Chemical ligation dependent probe amplification (clpa)

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US (2)US9976177B2 (en)
EP (2)EP2765205B1 (en)
JP (1)JP2012531887A (en)
CN (1)CN102449169B (en)
AU (1)AU2010232972B2 (en)
CA (1)CA2757300C (en)
DK (1)DK2414544T3 (en)
ES (1)ES2469092T3 (en)
SM (1)SMT201400108B (en)
WO (1)WO2010114599A1 (en)

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WO2010114599A1 (en)2010-10-07
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US9976177B2 (en)2018-05-22
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CA2757300C (en)2018-01-09
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AU2010232972A1 (en)2011-11-10
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