IP Library Granted Patent US 9,422,551
Granted Patent B2
US 9,422,551 · App. 13/904,452 · Granted Aug 23, 2016

Adapters for ligation to RNA in an RNA library with reduced bias

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Quick Facts
Patent No.
US 9,422,551
App. No.
13/904,452
Granted
Aug 23, 2016
Kind
B2
Abstract

An improved adapter design for ligation to target RNA in a library is described which enables target RNAs that would normally be under-represented or not represented at all in a cDNA library or a PCR product of the cDNA library, to be represented with average frequency.

Claims (45)

1. A set of reagents for producing adaptor-ligated RNA, comprising:

(a) a population of 3′ polynucleotide adaptors each having a 3′ end and a 5′ end,

wherein each adaptor comprises:

(i) a first non-random sequence of at least seven defined nucleotides at the 5′ end,

(ii) a first random nucleotide sequence located between the 3′ end and the first defined nucleotide sequence,

(iii) a third non-random sequence of at least 5 defined nucleotides, and

(iv) a modified nucleotide at the 3′ end,

and wherein the first random nucleotide sequence varies in the population of 3′ polynucleotide adaptors;

(b) a 5′ polynucleotide adapter, the 5′ adapter having a 3′ end and a 5′ end and comprising a second non-random sequence of at least seven contiguous nucleotides that is complementary to the first non-random sequence of (a)(i); and

(c) a ligase capable of ligating RNA.

2. The set of reagents according to claim 1 , wherein the length of the first random nucleotide sequence is in the range of 2 nucleotides to 50 nucleotides.

3. The set of reagents according to claim 1 , wherein the 3′ polynucleotide adapter further comprises a barcode sequence.

4. The set of reagents according to claim 1 , wherein the 3′ polynucleotide adaptor is a DNA oligonucleotide and the 5′ polynucleotide adapter is an RNA oligonucleotide.

5. A method of ligating adapters to target RNA having 3′ and 5′ ends in an RNA library, comprising:

obtaining the set of reagents of claim 1 ;

ligating the 3′ adapter to an RNA in an RNA library;

allowing a portion of the 5′ adapter to hybridize with a portion of the sequence of the 3′ adapter; and

ligating the hybridized 5′ end RNA adapter to the RNA.

6. The set of reagents of claim 1 , wherein:

(a) the 3′ adapter comprises, from 5′ to 3′: the first non-random sequence, the first random nucleotide sequence, and the third non-random sequence; and

(b) the 5′ adaptor comprises a second random nucleotide sequence that is 5′ to the second non-random sequence of (b).

7. The set of reagents of claim 6 , wherein the first and second random nucleotide sequences are independently in the range of 2 to 50 nucleotides in length.

8. The set of reagents of claim 6 , wherein the 3′ adapter is 5′ adenylated.

9. The set of reagents of claim 6 , wherein the 5′ adaptor comprises a 5′ hydroxyl.

10. The set of reagents of claim 6 , wherein the 3′ and 5′ adaptors are both DNA oligonucleotides.

11. A set of reagents according to claim 1 , wherein the wherein the 3′ and 5′ adaptors are both RNA oligonucleotides.

12. The set of reagents of claim 6 , wherein the ligase is a T4 RNA ligase.

13. A set of reagents, comprising:

(a) a population of 3′ polynucleotide adaptors each having a 3′ end and a 5′ end wherein each adapter, comprises:

(i) a first non-random sequence of at least seven defined nucleotides at the 5′ end,

(ii) a first random nucleotide sequence located between the 3′ end and the first defined nucleotide sequence, wherein each of the first random sequences in the population of 3′ adapters comprises a different sequence

(iii) a third non-random sequence of at least 5 defined nucleotides, and

(iv) a modified nucleotide at the 3′ end, and wherein the first random nucleotide sequence varies in the population of 3′ polynucleotide adaptors;

(b) a 5′ polynucleotide adapter, the 5′ adapter having a 3′ end and a 5′ end and comprising a second non-random sequence of at least seven contiguous nucleotides that is complementary to the first non-random sequence of (a)(i);

(c) a ligase capable of ligating RNA;

(d) a reverse transcription primer comprising a 3′ end that is complementary with and hybridizes to the third non-random sequence of (a)(iii); and

(e) a reverse transcriptase.

14. The set of reagents of claim 6 , wherein the 3′ adapter further comprises a barcode.

15. The set of reagents of claim 6 , further comprising a reverse transcriptase.

16. The set of reagents of claim 6 , wherein the 5′ and 3′ adaptors contain a primer binding site in the first or second defined nucleotide sequence or in a third or fourth defined nucleotide sequence.

17. A method of ligating adapters to target RNA having 3′ and 5′ ends in an RNA pool, comprising:

obtaining the set of reagents of claim 6 ;

ligating the 3′ adapter to an RNA in a pool of RNA;

allowing the 3′ end of the 5′ adapter to hybridize with the 5′ end of the 3′ adapter; and

ligating the hybridized 3′ end of the 5′ adapter to the RNA.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 27, 2023
From: NEW ENGLAND BIOLABS, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 065044/0729 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2013
From: ROBB, G. BRETT; FUCHS, RYAN T.; ZHUANG, FANGLEI
To: NEW ENGLAND BIOLABS, INC.
Reel/Frame 030525/0558 →