IP Library Granted Patent US 11,597,929
Granted Patent B2
US 11,597,929 · App. 17/453,995 · Granted Mar 7, 2023

Extended dicer substrate agents and methods for the specific inhibition of gene expression

Inventor: Bob Dale Brown (Littleton, MA)
Assignee: Dicerna Pharmaceuticals, Inc.
C12N15/113A61K31/713C12N15/111C12N15/1135C12N15/1137C12N2310/11C12N2310/14C12N2310/51C12N2310/533C12N2320/53
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,597,929
App. No.
17/453,995
Granted
Mar 7, 2023
Kind
B2
Abstract

The invention provides compositions and methods for reducing expression of a target gene in a cell, involving contacting a cell with an isolated double stranded nucleic acid (dsNA) in an amount effective to reduce expression of a target gene in a cell. The dsNAs of the invention possess a single stranded extension (in most embodiments, the single stranded extension comprises at least one modified nucleotide and/or phosphate back bone modification). Such single stranded extended Dicer-substrate siRNAs (DsiRNAs) were demonstrated to be effective RNA inhibitory agents compared to corresponding double stranded DsiRNAs.

Claims (20)

1. A double stranded ribonucleic acid (dsRNA) comprising a first oligonucleotide strand and a second oligonucleotide strand wherein said second strand is annealed to said first strand to form a duplex region of 21 nucleotides in length, wherein said first strand is 23 nucleotides in length and comprises at least 18 nucleotides with a 2′-O-methyl modified sugar moiety and at least one nucleotide with a 2′-fluoro modified sugar moiety, and said second strand is 21 nucleotides in length and comprises at least 12 nucleotides with a 2′-O-methyl modified sugar moiety and at least one nucleotide with a 2′-fluoro modified sugar moiety, wherein said first strand comprises one single-stranded nucleotide at the 3′ terminus and one single-stranded nucleotide the 5′ terminus, and wherein said second oligonucleotide strand is fully complementary to a target mRNA sequence along at least 19 ribonucleotides of the second strand.

2. The dsRNA of claim 1 , wherein said second strand comprises 13 nucleotides with a 2′-O-methyl modified sugar moiety and 8 nucleotides with a 2′-fluoro modified sugar moiety.

3. The dsRNA of claim 1 , wherein said second strand comprises 12 nucleotides with a 2′-O-methyl modified sugar moiety and 9 nucleotides with a 2′-fluoro modified sugar moiety.

4. The dsRNA of claim 1 , wherein said first strand comprises 18 nucleotides with a 2′-O-methyl modified sugar moiety and 3 nucleotides with a 2′-fluoro modified sugar moiety.

5. The dsRNA of claim 1 , wherein the full length of said first strand are modified ribonucleotides.

6. The dsRNA of claim 1 , wherein the full length of said second strand are modified ribonucleotides.

7. The dsRNA of claim 1 , wherein the dsRNA comprises one or more phosphorothioate linkages.

8. The dsRNA of claim 1 , wherein the dsRNA is conjugated at the 5′ terminus of the first strand to a non-nucleic acid moiety.

9. The dsRNA of claim 1 , wherein the dsRNA comprises inverted abasic residues.

10. The dsRNA of claim 1 , wherein the dsRNA comprises a modification which is an abasic sugar.

11. A pharmaceutical composition comprising the dsRNA of claim 1 and a pharmaceutically acceptable carrier.

12. The pharmaceutical composition of claim 11 , wherein the pharmaceutically acceptable carrier comprises buffered saline.

13. A double stranded ribonucleic acid (dsRNA) comprising a first oligonucleotide strand and a second oligonucleotide strand wherein said second strand is annealed to said first strand to form a duplex region of 21 nucleotides in length, wherein said first strand is 23 nucleotides in length and comprises at least 18 nucleotides with a 2′-O-methyl modified sugar moiety and at least one nucleotide with a 2′-fluoro modified sugar moiety, and said second strand is 21 nucleotides in length and comprises at least 12 nucleotides with a 2′-O-methyl modified sugar moiety and at least one nucleotide with a 2′-fluoro modified sugar moiety, wherein said first strand comprises one single-stranded nucleotide at the 3′ terminus and one single-stranded nucleotide at the 5′ terminus, wherein the dsRNA comprises one or more phosphorothioate linkages, and wherein said second oligonucleotide strand is fully complementary to a target mRNA sequence along at least 19 ribonucleotides of the second strand, wherein the dsRNA is attached to a non-nucleic acid moiety at the 5′ terminus of the first strand.

14. The dsRNA of claim 13 , wherein the dsRNA comprises a modification which is an abasic sugar.

15. The dsRNA of claim 13 , wherein the dsRNA comprises inverted abasic residues.

16. The dsRNA of claim 13 , wherein said second strand comprises 13 nucleotides with a 2′-O-methyl modified sugar moiety and 8 nucleotides with a 2′-fluoro modified sugar moiety.

17. The dsRNA of claim 13 , wherein said second strand comprises 12 nucleotides with a 2′-O-methyl modified sugar moiety and 9 nucleotides with a 2′-fluoro modified sugar moiety.

18. The dsRNA of claim 13 , wherein said first strand comprises 18 nucleotides with a 2′-O-methyl modified sugar moiety and 3 nucleotides with a 2′-fluoro modified sugar moiety.

19. The dsRNA of claim 13 , wherein the full length of said first strand are modified ribonucleotides.

20. The dsRNA of claim 13 , wherein the full length of said second strand are modified ribonucleotides.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2025
From: DICERNA PHARMACEUTICALS, INC.
To: NOVO NORDISK A/S
Reel/Frame 070837/0034 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2021
From: BROWN, BOB D.
To: DICERNA PHARMACEUTICALS, INC.
Reel/Frame 058060/0351 →
Continuity (22)
Continuation 17095945 · Nov 12, 2020
Continuation 14518379 · Oct 20, 2014
Continuation 13708185 · Dec 7, 2012
Division 12824011 · Jun 25, 2010
Continuation In Part 12704256 · Feb 11, 2010
Continuation In Part 12642371 · Dec 18, 2009
Provisional Application 61151841 · Feb 11, 2009
Provisional Application 61138946 · Dec 18, 2008
Provisional Application 61166227 · Apr 2, 2009
Provisional Application 61173505 · Apr 28, 2009
Provisional Application 61173514 · Apr 28, 2009
Provisional Application 61173521 · Apr 28, 2009
Provisional Application 61173525 · Apr 28, 2009
Provisional Application 61173532 · Apr 28, 2009
Provisional Application 61173538 · Apr 28, 2009
Provisional Application 61173544 · Apr 28, 2009
Provisional Application 61173549 · Apr 28, 2009
Provisional Application 61173554 · Apr 28, 2009
Provisional Application 61173556 · Apr 28, 2009
Provisional Application 61173558 · Apr 28, 2009
Provisional Application 61173563 · Apr 28, 2009
Related Publication 20220162608A1 · May 26, 2022
Cited By (1)
US 12,534,726