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US20040203016A1 - Rapid subcloning using site-specific recombination - Google Patents

Rapid subcloning using site-specific recombination
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Publication number
US20040203016A1
US20040203016A1US10/623,386US62338603AUS2004203016A1US 20040203016 A1US20040203016 A1US 20040203016A1US 62338603 AUS62338603 AUS 62338603AUS 2004203016 A1US2004203016 A1US 2004203016A1
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nucleic acid
site
sequence
specific recombinase
gene
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Abandoned
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US10/623,386
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Stephen Elledge
Qinghua Liu
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Baylor College of Medicine
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Priority to US10/623,386priorityCriticalpatent/US20040203016A1/en
Assigned to BAYLOR COLLEGE OF MEDICINEreassignmentBAYLOR COLLEGE OF MEDICINEASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: ELLEDGE, STEPHEN J.
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Abstract

The present invention provides compositions, including vectors, and methods for the rapid subcloning of nucleic acid sequences in vivo and in vitro. In particular, the invention provides vectors used to contain a gene of interest that comprise a sequence-specific recombinase target site. These vectors are used to rapidly transfer the gene or genes of interest into any vector that contains a sequence-specific recombinase target site located downstream of a regulatory element so that the gene of interest may be regulated.

Description

Claims (36)

We claim:
1. A method for the recombination of nucleic acid constructs, comprising:
a) providing:
i) a first nucleic acid construct comprising, in operable order, an origin of replication, a first sequence-specific recombinase target site, and a nucleic acid of interest;
ii) a second nucleic acid construct comprising, in operable order, an origin of replication, a regulatory element and a second sequence-specific recombinase target site adjacent to and downstream from said regulatory element; and
iii) a site-specific recombinase;
b) contacting said first and said second nucleic acid constructs with said site-specific recombinase under conditions such that said first and second nucleic acid constructs are recombined to form a third nucleic acid construct, wherein said nucleic acid of interest is operably linked to said regulatory element.
2. The method ofclaim 1, wherein said regulatory element comprises a promoter element.
3. The method ofclaim 1, wherein said regulatory element comprises a fusion peptide.
4. The method ofclaim 3, wherein said fusion peptide comprises an affinity domain.
5. The method ofclaim 3, wherein said fusion peptide comprises an epitope tag.
6. The method ofclaim 1, wherein said nucleic acid of interest comprises a gene.
7. The method ofclaim 1, wherein said first nucleic acid construct further comprises a selectable marker.
8. The method ofclaim 1, wherein said second nucleic acid construct further comprises a selectable marker.
9. The method ofclaim 1, wherein said first nucleic acid construct further comprises a prokaryotic termination sequence.
10. The method ofclaim 1, wherein said first nucleic acid construct further comprises a eukaryotic polyadenylation sequence.
11. The method ofclaim 1, wherein said first nucleic acid construct further comprises a conditional origin of replication.
12. The method ofclaim 1, wherein said first sequence-specific recombinase target site is selected from the group consisting of loxP, loxP2, loxP3, loxP23, loxP511, loxB, loxC2, loxL, loxR, loxΔ86, loxΔ117, frt, dif, loxH and att.
13. The method ofclaim 1, wherein said second sequence-specific recombinase target site is selected from the group consisting of loxP, loxP2, loxP3, loxP23, loxP511, loxB, loxC2, loxL, loxR, loxΔ86, loxΔ117, frt, dif, loxH and att.
14. The method ofclaim 1, wherein said first nucleic acid construct further comprises a polylinker.
15. The method ofclaim 1, wherein said contacting said first and said second nucleic acid constructs with said site-specific recombinase comprises introducing said first and said second nucleic acid constructs into a host cell under conditions such that said third nucleic acid construct is capable of replicating in said host cell.
16. The method ofclaim 15, wherein said site-specific recombinase is encoded by said host cell.
17. The method ofclaim 1, wherein said first nucleic acid construct further comprises a third sequence-specific recombinase target site and said second nucleic acid constructs further comprises a fourth sequence-specific recombinase target site.
18. The method ofclaim 17, wherein said first sequence-specific recombinase target site and said third sequence-specific recombinase target site in said first nucleic acid construct are located on opposite sides of said nucleic acid of interest.
19. The method ofclaim 17, wherein in said third and fourth sequence-specific recombinase target sites are selected from the group consisting of RS sites and Res sites.
20. The method ofclaim 1, wherein said first nucleic acid construct further comprises a third sequence-specific recombinase target site and said second nucleic acid constructs further comprises a fourth sequence-specific recombinase target site, wherein the method further comprises providing a second site-specific recombinase and step c) contacting said third nucleic acid construct with said second site-specific recombinase under conditions such that said third nucleic acid construct is recombined to form a fourth and a fifth nucleic acid construct.
21. A recombined nucleic acid construct prepared according to the method ofclaim 1.
22. A method for the recombination of nucleic acid constructs, comprising:
a) providing:
i) a vector;
ii) a linear nucleic acid molecule comprising a sequence complementary to at least a portion of said vector; and
iii) anE. colihost cell, wherein said host cell comprises an endogenous recombination system, a loss of function rec mutation, a suppressor, and a loss of function endogenous restriction modification system mutation; and
b) introducing said vector and said linear nucleic acid molecule into said host cell under conditions such that said linear nucleic acid molecule and said vector are recombined to form a recombinant nucleic acid construct.
23. The method ofclaim 22, wherein said loss of function rec mutation is selected from the group consisting of recBC and recD.
24. The method ofclaim 22, wherein said suppressor comprises sbc.
25. The method ofclaim 22, wherein said loss of function endogenous restriction modification system mutation comprises hsdR.
26. A method for the cloning of nucleic acid libraries, comprising:
a) providing:
i) a plurality of first nucleic acid constructs comprising, in operable order, an origin of replication, a first sequence-specific recombinase target site, and a nucleic acid member from a nucleic acid library;
ii) a plurality of second nucleic acid constructs comprising, in operable order, an origin of replication, a regulatory element and a second sequence-specific recombinase target site adjacent to and downstream from said regulatory element; and
iii) a site-specific recombinase;
b) contacting said plurality of first and second nucleic acid constructs with said site-specific recombinase under conditions such that said plurality of first and second nucleic acid constructs are recombined to form a plurality of third nucleic acid constructs, wherein said nucleic acid members from said nucleic acid library are operably linked to said regulatory elements.
27. A nucleic acid library prepared according to the method ofclaim 26.
28. A method for the directional cloning of a nucleic acid molecule, comprising:
a) providing:
i) first and second portions of a regulatory element;
ii) a first nucleic acid molecule comprising said first portion of said regulatory element; and
iii) a second nucleic acid molecule comprising said second portion of said regulatory element; and
b) combining said first and said second nucleic acid molecules to produce a third nucleic acid molecule under conditions whereby an intact regulatory element is produced from the combination of said first and said second portions of said regulatory element, wherein the presence of said intact regulatory element in said third nucleic acid molecule indicates a direction of cloning of said first nucleic acid molecule with respect to said second nucleic acid molecule.
29. The method ofclaim 28, wherein said regulatory element comprises a lacO site.
30. A method for regulated recombination in host cells that constitutively express a recombinase, comprising:
a) providing:
i) a host cell expressing a recombinase;
ii) a first nucleic acid construct comprising an origin of replication, a first site-specific recombinase site, a second site-specific recombinase site that differs in sequence from said first site-specific recombinase site such that said recombinase will not initiate recombination between said first and second site-specific recombinase sites, and a selectable marker gene between said first and second site-specific recombinase sites; and
iii) a second nucleic acid construct comprising an origin of replication, a third site-specific recombinase target site, and a fourth site-specific recombinase target site that differs in sequence from said third site-specific recombinase site such that said recombinase will not initiate recombination between said third and fourth site-specific recombinase sites; and
b) introducing said first and second nucleic acid constructs into said host cell under conditions such that said first and second nucleic acid constructs are recombined.
31. The method ofclaim 30, further comprising the step of selecting for a desired recombinant nucleic acid molecule using said selectable marker.
32. The method ofclaim 30, wherein said first nucleic acid construct is a Univector.
33. The method ofclaim 30, wherein said second nucleic acid construct is a Univector.
34. A host cell expressing a recombinant nucleic acid construct prepared according to the method ofclaim 30, wherein said host cell constitutively expresses a recombinase.
35. A method for the recombination of nucleic acid constructs, comprising:
a) providing:
i) a first nucleic acid construct comprising a loxH site;
ii) a second nucleic acid construct comprising a loxH site; and
iii) a site-specific recombinase; and
b) contacting said first and said second nucleic acid constructs with said site-specific recombinase under conditions such that said first and second nucleic acid constructs are recombined.
36. A recombined nucleic acid construct prepared according to the method ofclaim 35.
US10/623,3861997-02-282003-07-18Rapid subcloning using site-specific recombinationAbandonedUS20040203016A1 (en)

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US10/623,386US20040203016A1 (en)1997-02-282003-07-18Rapid subcloning using site-specific recombination

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US08/864,224US5851808A (en)1997-02-281997-02-28Rapid subcloning using site-specific recombination
US09/122,384US6828093B1 (en)1997-02-281998-07-24Rapid subcloning using site-specific recombination
US10/623,386US20040203016A1 (en)1997-02-282003-07-18Rapid subcloning using site-specific recombination

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US08/864,224Expired - LifetimeUS5851808A (en)1997-02-281997-02-28Rapid subcloning using site-specific recombination
US09/122,384Expired - Fee RelatedUS6828093B1 (en)1997-02-281998-07-24Rapid subcloning using site-specific recombination
US10/623,386AbandonedUS20040203016A1 (en)1997-02-282003-07-18Rapid subcloning using site-specific recombination
US10/954,721AbandonedUS20050136447A1 (en)1997-02-282004-09-30Rapid subcloning using site-specific recombination
US11/784,146AbandonedUS20090215648A1 (en)1997-02-282007-04-04Rapid subcloning using site-specific recombination
US12/976,637AbandonedUS20120021953A1 (en)1997-02-282010-12-22Rapid Subcloning Using Site-Specific Recombination

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US09/122,384Expired - Fee RelatedUS6828093B1 (en)1997-02-281998-07-24Rapid subcloning using site-specific recombination

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US11/784,146AbandonedUS20090215648A1 (en)1997-02-282007-04-04Rapid subcloning using site-specific recombination
US12/976,637AbandonedUS20120021953A1 (en)1997-02-282010-12-22Rapid Subcloning Using Site-Specific Recombination

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US20050136447A1 (en)2005-06-23
US5851808A (en)1998-12-22
US20090215648A1 (en)2009-08-27
US20120021953A1 (en)2012-01-26
US6828093B1 (en)2004-12-07

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