IP Library Granted Patent US 10,208,337
Granted Patent B2
US 10,208,337 · App. 15/674,468 · Granted Feb 19, 2019

Compositions including a double stranded nucleic acid molecule and a stem-loop oligonucleotide

Inventors: Vladimir L. Makarov (Ann Arbor, MI); Emmanuel Kamberov (Ann Arbor, MI); Brendan J. Tarrier (Belleville, MI)
Assignee: TAKARA BIO USA, INC.
C12Q1/6853C12N15/1068C12P19/34C12Q1/686C12Q1/6855C12Q1/6865
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Quick Facts
Patent No.
US 10,208,337
App. No.
15/674,468
Granted
Feb 19, 2019
Kind
B2
Abstract

The present invention concerns preparation of DNA molecules, such as a library, using a stem-loop oligonucleotide. In particular embodiments, the invention employs a single reaction mixture and conditions. In particular, at least part of the inverted palindrome is removed during the preparation of the molecules to facilitate amplification of the molecules. Thus, in specific embodiments, the DNA molecules are suitable for amplification and are not hindered by the presence of the palindrome.

Claims (39)

1. An oligonucleotide-attached nucleic acid molecule comprising:

a double stranded nucleic acid molecule comprising a first strand and a second strand; and

a stem-loop oligonucleotide comprising:

an inverted repeat;

a loop;

a non-replicable base or sequence, or at least one deoxy-uridine; and

a 5′ end that lacks a phosphate;

wherein the stem-loop oligonucleotide is attached to the first strand of the double stranded nucleic acid molecule and the 5′ end of the stem-loop oligonucleotide is separated from the second strand of the double stranded nucleic acid molecule.

2. The oligonucleotide-attached nucleic acid molecule according to claim 1 , wherein the double stranded nucleic acid molecule is a double stranded DNA molecule.

3. The oligonucleotide-attached nucleic acid molecule according to claim 1 , wherein the 5′ end is separated from the second strand of the double stranded nucleic acid molecule by a nick, a gap, or a 5′ flap structure.

4. The oligonucleotide-attached nucleic acid molecule according to claim 1 , wherein the 5′ end that lacks a phosphate comprises a 5′ OH.

5. The oligonucleotide-attached nucleic acid molecule according to claim 1 , wherein the stem loop oligonucleotide comprises a non-replicable base or sequence.

6. The oligonucleotide-attached nucleic acid molecule according to claim 5 , wherein the non-replicable base or sequence comprises an abasic site or sequence, hexaethylene glycol, or a bulky chemical moiety attached to the sugar-phosphate backbone or the base.

7. An oligonucleotide-attached nucleic acid molecule comprising:

a double stranded nucleic acid molecule and a stem-loop oligonucleotide comprising an inverted repeat and a loop, wherein one strand of the stem-loop oligonucleotide is attached to one strand of the double stranded nucleic acid molecule and the stem loop oligonucleotide further comprises at least one deoxy-uridine.

8. The oligonucleotide-attached nucleic acid molecule according to claim 7 , wherein the loop of the stem-loop oligonucleotide comprises at least one deoxy-uridine.

9. A composition comprising a plurality of oligonucleotide-attached nucleic acid molecules each comprising:

a double stranded nucleic acid molecule comprising a first strand and a second strand; and

a stem-loop oligonucleotide comprising:

an inverted repeat;

a loop;

a non-replicable base or sequence, or at least one deoxy-uridine; and

a 5′ end that lacks a phosphate;

wherein the stem-loop oligonucleotide is attached to the first strand of the double stranded nucleic acid molecule and the 5′ end of the stem-loop oligonucleotide is separated from the second strand of the double stranded nucleic acid molecule.

10. The composition according to claim 9 , wherein the double stranded nucleic acid molecule is a double stranded DNA molecule.

11. The composition according to claim 9 , wherein the 5′ end is separated from the second strand of the double stranded nucleic acid molecule by a nick, a gap, or a 5′ flap structure.

12. The composition according to claim 9 , wherein the 5′ end that lacks a phosphate comprises a 5′ OH.

13. The composition according to claim 9 , wherein the stem loop oligonucleotide comprises a non-replicable base or sequence.

14. The composition according to claim 13 , wherein the non-replicable base or sequence comprises an abasic site or sequence, hexaethylene glycol, or a bulky chemical moiety attached to the sugar-phosphate backbone or the base.

15. A composition comprising a plurality of oligonucleotide-attached nucleic acid molecules each comprising:

a double stranded nucleic acid molecule; and

a stem-loop oligonucleotide comprising an inverted repeat and a loop, wherein one strand of the stem-loop oligonucleotide is attached to one strand of the double stranded nucleic acid molecule and wherein the stem loop oligonucleotide further comprises at least one deoxy-uridine.

16. The composition according to claim 15 , wherein the loop of the stem-loop oligonucleotide comprises at least one deoxy-uridine.

17. The oligonucleotide-attached nucleic acid molecule according to claim 6 , wherein the non-replicable base or sequence comprises an abasic site or sequence, or a bulky chemical moiety attached to the sugar-phosphate backbone or the base.

18. The oligonucleotide-attached nucleic acid molecule according to claim 14 , wherein the non-replicable base or sequence comprises an abasic site or sequence, or a bulky chemical moiety attached to the sugar-phosphate backbone or the base.

19. A composition comprising:

the oligonucleotide-attached nucleic acid molecule according to claim 1 ; and

a ligase, a polymerase, a glycosylase, or a combination thereof.

20. The composition according to claim 19 , wherein the polymerase is a thermostable polymerase.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2018
From: MAKAROV, VLADIMIR L.; KAMBEROV, EMMANUEL; TARRIER, BRENDAN J.
To: RUBICON GENOMICS, INC.
Reel/Frame 044608/0332 →
MERGER Recorded Jan 12, 2018
From: RUBICON GENOMICS, INC.
To: TAKARA BIO USA, INC.
Reel/Frame 044608/0377 →
Continuity (9)
Continuation 15430803 · Feb 13, 2017
Continuation 14250538 · Apr 11, 2014
Continuation 13766607 · Feb 13, 2013
Continuation 13286937 · Nov 1, 2011
Continuation 12892359 · Sep 28, 2010
Continuation 12270850 · Nov 13, 2008
Continuation 11366222 · Mar 2, 2006
Provisional Application 60704932 · Aug 2, 2005
Related Publication 20170342475A1 · Nov 30, 2017
Cited By (1)
US 12,680,097