Angiotensinogen (AGT) iRNA compositions and methods of use thereof
The present invention relates to RNAi agents, e.g., double-stranded RNAi agents, targeting the angiotensinogen (AGT) gene, and methods of using such RNAi agents to inhibit expression of AGT and methods of treating subjects having an AGT-associated disorder, e.g., hypertension.
1. A double-stranded ribonucleic acid (RNAi) agent for inhibiting expression of angiotensinogen (AGT) in a cell, wherein said double-stranded RNAi agent comprises a sense strand and an antisense strand forming a double-stranded region,
wherein the sense strand comprises at least 15 contiguous nucleotides of nucleotides of the nucleotide sequence of SEQ ID NO:1 and the antisense strand comprises at least 15 contiguous nucleotides of the nucleotides at the corresponding position of the nucleotide sequence of SEQ ID NO:2,
wherein the antisense strand is substantially complementary to the sense strand, and
wherein substantially all of the nucleotides of said sense strand and substantially all of the nucleotides of said antisense strand are modified nucleotides.
2. The double-stranded RNAi agent of claim 1 , wherein at least one strand is conjugated to a ligand.
3. The double-stranded RNAi agent of claim 1 , wherein all of the nucleotides of said sense strand and all of the nucleotides of said antisense strand are modified nucleotides.
4. A double-stranded ribonucleic acid (RNAi) agent for inhibiting expression of angiotensinogen (AGT) in a cell, wherein the double-stranded RNAi agent comprises a sense strand and an antisense strand forming a double-stranded region,
wherein the antisense strand comprises at least 15 contiguous nucleotides of 5′-UUACUCUCAUUGUGGAUGA-3′ (SEQ ID NO:876),
wherein the antisense strand is substantially complementary to the sense strand, and
wherein substantially all of the nucleotides of the sense strand and substantially all of the nucleotides of the antisense strand are modified nucleotides.
5. The double-stranded RNAi agent of claim 4 , wherein the antisense strand comprises at least 17 contiguous nucleotides of 5′-UUACUCUCAUUGUGGAUGA-3′ (SEQ ID NO:876).
6. The double-stranded RNAi agent of claim 4 , wherein the antisense strand comprises at least 19 contiguous nucleotides of 5′-UUACUCUCAUUGUGGAUGA-3′ (SEQ ID NO:876).
7. The double-stranded RNAi agent of claim 4 , wherein the sense strand comprises at least 15 contiguous nucleotides of 5′-UCAUCCACAAUGAGAGUAA-3′ (SEQ ID NO: 679).
8. The double-stranded RNAi agent of claim 7 , wherein the sense strand comprises at least 17 contiguous nucleotides of 5′-UCAUCCACAAUGAGAGUAA-3′ (SEQ ID NO: 679).
9. The double-stranded RNAi agent of claim 8 , wherein the sense strand comprises at least 19 contiguous nucleotides of 5′-UCAUCCACAAUGAGAGUAA-3′ (SEQ ID NO: 679).
10. The double-stranded RNAi agent of claim 4 , wherein at least one strand is conjugated to a ligand.
11. The double-stranded RNAi agent of claim 4 , wherein all of the nucleotides of the sense strand and all of the nucleotides of the antisense strand are modified nucleotides.
12. The double-stranded RNAi agent of claim 5 , wherein at least one strand is conjugated to a ligand.
13. The double-stranded RNAi agent of claim 5 , wherein all of the nucleotides of the sense strand and all of the nucleotides of the antisense strand are modified nucleotides.
14. The double-stranded RNAi agent of claim 6 , wherein at least one strand is conjugated to a ligand.
15. The double-stranded RNAi agent of claim 6 , wherein all of the nucleotides of the sense strand and all of the nucleotides of the antisense strand are modified nucleotides.