IP Library Granted Patent US 9,133,233
Granted Patent B2
US 9,133,233 · App. 10/578,530 · Granted Sep 15, 2015

RNA amidates and thioamidates for RNAi

Inventors: Sergei Gryaznov (San Mateo, CA); Krisztina Pongracz (Oakland, CA)
Assignee: Geron Corporation
C07H21/00C12N15/111C12N2310/14C12N2310/3145C12N2310/3515C12N2320/51
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Quick Facts
Patent No.
US 9,133,233
App. No.
10/578,530
Granted
Sep 15, 2015
Kind
B2
Abstract

The present disclosure relates to RNA amidates and thioamidates useful for RNA interference applications. The RNA amidates and thioamidates contain at least one internucleoside linkage chosen from ribo-N3′→P5′ phosphoramidate (NP) and ribo-N3′→P5′ thiophosphoramidate (NPS) linkages, and optionally further containing at least one covalently conjugated lipid moiety. Compositions comprising the amidates and thioamidates are disclosed, as are methods for their use in modulating gene expression.

Claims (27)

1. An isolated small double stranded interfering RNA (siRNA)

wherein one strand is complementary to a target nucleic acid sequence and both strands are from 19 to 25 nucleotides in length, and

wherein at least one strand of the RNA comprises an oligonucleotide wherein all of the nucleosides are of the formula:

wherein R 1 is chosen from fluorine and OR 2 , R 2 is chosen from hydrogen and lower alkyl, and B is chosen from purines, pyrimidines, and analogs thereof, and wherein all of the internucleoside linkages in the oligonucleotide are ribo N3′→P5′ thiophosphoramidate linkages of the formula 3′-[—NH—P(═O)(—XR)—O-]-5′, wherein X is S and R is selected from hydrogen, alkyl and aryl.

2. The small interfering RNA according to claim 1 , wherein the RNA further comprises at least one covalently conjugated lipid moiety.

3. The small interfering RNA according to claim 2 , wherein the lipid moiety is covalently conjugated to the 5′ or 3′ terminus of at least one strand of the double-stranded RNA, and the lipid moiety is chosen from fatty acids, sterols and hydrocarbons.

4. The small interfering RNA according to claim 2 , wherein at least one strand comprises the structure:

O-(x-L) n

wherein

O is an oligonucleotide of formula:

wherein R 1 is chosen from fluorine and OR 2 , R 2 is chosen from hydrogen and lower alkyl, B is chosen from purines, pyrimidines, and analogs thereof, and wherein all of the internucleoside linkages in the oligonucleotide are ribo N3′→P5′ thiophosphoramidate linkages of the formula 3′-[—NH—P(═O)(—XR)—O-]-5′, wherein X is S and R is selected from hydrogen, alkyl and aryl, and further wherein the oligonucleotide comprises a sequence of 19 to 25 bases, and said sequence is at least partially complementary to a selected target sequence;

L is a lipid moiety;

x is an optional linker; and

n is an integer ranging from 1 to 5, wherein if n>1, each additional (x-L) component may be, independently, the same or different.

5. The small interfering RNA according to claim 4 , wherein L is a lipid chosen from substituted and unsubstituted fatty acids and sterols; or wherein L is chosen from substituted and unsubstituted hydrocarbons.

6. The small interfering RNA according to claim 5 , wherein L is chosen from fatty acids substituted with at least one fluorine; or wherein L is chosen from hydrocarbons substituted with at least one fluorine.

7. The small interfering RNA according to claim 1 , wherein at least 60% of the nucleobases in the oligonucleotide are ribonucleobases.

8. A method for effecting the post-transcriptional silencing of at least one gene, comprising administering to a mammal in need of such post-transcriptional silencing at least one small interfering RNA according to claim 1 .

9. The method of claim 8 , wherein the small interfering RNA further comprises at least one covalently conjugated lipid moiety.

10. The method of claim 8 , wherein the at least one gene encodes at least one mRNA chosen from cellular mRNAs and viral mRNAs; or wherein the at least one gene is an oncogene; or wherein the at least one gene is a viral gene.

11. A method for effecting the post-transcriptional silencing of at least one gene, comprising administering to a mammal in need of such post-transcriptional silencing at least one small interfering RNA according to claim 4 .

12. The method according to claim 11 , wherein the at least one gene encodes at least one mRNA chosen from cellular mRNAs and viral mRNAs; or wherein the at least one gene is an oncogene; or wherein the at least one gene is a viral gene.

13. A small interfering RNA as recited in claim 1 wherein said target nucleic acid sequence is a human immunodeficiency virus (HIV) gene, such that said siRNA modulates expression of said HIV gene.

14. The small interfering RNA according to claim 4 , wherein n=1 and the x-L component is covalently conjugated to the 5′ terminus of the oligonucleotide O.

15. The small interfering RNA to claim 4 , wherein n=1 and the (x-L) component is covalently conjugated to the 3′ terminus of the oligonucleotide O.

16. The small interfering RNA according to claim 4 , wherein n=2, one (x-L) component is covalently conjugated to the 5′ terminus and one independently chosen (x-L) component is covalently conjugated to the 3′ terminus.

17. A composition comprising at least one small interfering RNA according to claim 1 in an amount effective to modulate the expression of at least one gene.

Assignments (2)
PATENT SECURITY AGREEMENT Recorded Nov 12, 2024
From: GERON CORPORATION
To: BIOPHARMA CREDIT PLC [COLLATERAL AGENT]
Reel/Frame 069341/0832 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2007
From: GRYAZNOV, SERGEI M., MR.; PONGRACZ, KRISZTINA, MS.
To: GERON CORPORATION
Reel/Frame 018880/0193 →
Continuity (2)
Provisional Application 60516769 · Nov 4, 2003
Related Publication 20070275919A1 · Nov 29, 2007