SIGNAL TRANSDUCER AND ACTIVATOR OF TRANSCRIPTION FACTOR 6 (STAT6) iRNA COMPOSITIONS AND METHODS OF USE THEREOF
The present invention relates to RNAi agents, e.g., double stranded RNA (dsRNA) agents, targeting the signal transducer and activator of transcription factor 6 (STAT6) gene. The invention also relates to methods of using such RNAi agents to inhibit expression of a STAT6 gene and to methods of preventing and treating a STAT6-associated disorder, e.g., a respiratory disease, e.g., asthma, chronic obstructive pulmonary disease (COPD), cystic fibrosis, eosinophilic cough, bronchitis, sarcoidosis, pulmonary fibrosis, rhinitis, and sinusitis.
1 . A double stranded ribonucleic acid (dsRNA) agent for inhibiting expression of signal transducer and activator of transcription factor 6 (STAT6) in a cell,
wherein the dsRNA agent comprises a sense strand and an antisense strand forming a double stranded region,
a) wherein the sense strand comprises at least 15 contiguous nucleotides differing by no more than 3 nucleotides from any one of the nucleotide sequence of SEQ ID NO:1, and said antisense strand comprises at least 15 contiguous nucleotides differing by no more than 3 nucleotides from any one of the nucleotide sequence of SEQ ID NO:2, and
wherein the sense strand or the antisense strand is conjugated to one or more lipophilic moieties; or
b) wherein the antisense strand comprises a region of complementarity to an mRNA encoding STAT6, and wherein the region of complementarity comprises at least 15 contiguous nucleotides differing by no more than 3 nucleotides from any one of the antisense nucleotide sequences in any one of Tables 2-3, and
wherein the sense strand or the antisense strand is conjugated to one or more lipophilic moieties.
2 .- 10 . (canceled)
11 . The dsRNA agent of claim 1 , wherein all of the nucleotides of the sense strand and all of the nucleotides of the antisense strand comprise a nucleotide modification.
12 . The dsRNA agent of claim 9 , wherein at least one of the nucleotide modifications is selected from the group a deoxy-nucleotide modification, a 3′-terminal deoxythimidine (dT) nucleotide modification, a 2′-O-methyl nucleotide modification, a 2′-fluoro nucleotide modification, a 2′-deoxy nucleotide modification, a locked nucleotide modification, an unlocked nucleotide modification, a conformationally restricted nucleotide modification, a constrained ethyl nucleotide modification, an abasic nucleotide modification, a 2′-amino nucleotide modification, a 2′-O-allyl nucleotide modification, 2′-C-alkyl nucleotide modification, a 2′-methoxyethyl nucleotide modification, a 2′-O-alkyl-nucleotide modification, a morpholino nucleotide modification, a phosphoramidate modification, a non-natural base comprising nucleotide modification, a tetrahydropyran nucleotide modification, a 1,5-anhydrohexitol nucleotide modification, a cyclohexenyl nucleotide modification, a nucleotide comprising a 5′-phosphorothioate group modification, a nucleotide comprising a 5′-methylphosphonate group modification, a nucleotide comprising a 5′ phosphate or 5′ phosphate mimic modification, a nucleotide comprising vinyl phosphonate modification, a nucleotide comprising adenosine-glycol nucleic acid (GNA) modification, a nucleotide comprising thymidine-glycol nucleic acid (GNA) S-Isomer modification, a nucleotide comprising 2-hydroxymethyl-tetrahydrofurane-5-phosphate modification, a nucleotide comprising 2′-deoxythymidine-3′phosphate modification, a nucleotide comprising 2′-deoxyguanosine-3′-phosphate modification, a 2′-O hexadecyl nucleotide modification, a nucleotide comprising a 2′-phosphate modification, a cytidine-2′-phosphate nucleotide modification, a guanosine-2′-phosphate nucleotide modification, a 2′-O-hexadecyl-cytidine-3′-phosphate nucleotide modification, a 2′-O-hexadecyl-adenosine-3′-phosphate nucleotide modification, a 2′-O-hexadecyl-guanosine-3′-phosphate nucleotide modification, a 2′-O-hexadecyl-uridine-3′-phosphate nucleotide modification, a 5′-vinyl phosphonate (VP) modification, a 2′-deoxyadenosine-3′-phosphate nucleotide modification, a 2′-deoxycytidine-3′-phosphate nucleotide modification, a 2′-deoxyguanosine-3′-phosphate nucleotide modification, a 2′-deoxythymidine-3′-phosphate nucleotide modification, a 2′-deoxyuridine nucleotide modification, and a terminal nucleotide linked to a cholesteryl derivative and a dodecanoic acid bisdecylamide group modification; and combinations thereof.
13 .- 15 .
16 . The dsRNA agent of claim 1 , further comprising at least one phosphorothioate internucleotide linkage.
17 . (canceled)
18 . The dsRNA agent of claim 1 , wherein each strand is no more than 30 nucleotides in length.
19 . The dsRNA agent of claim 1 , wherein at least one strand comprises a 3′ overhang of at least 1 nucleotide.
20 . (canceled)
21 . The dsRNA agent of claim 1 , wherein the double stranded region is 15-30 nucleotide pairs in length.
22 .- 29 .
30 . The dsRNA agent of claim 1 , wherein one or more lipophilic moieties are conjugated to one or more internal positions on at least one strand.
31 .- 39 .
40 . The dsRNA agent of claim 1 , wherein the one or more lipophilic moieties are conjugated to one or more of the internal positions selected from the group consisting of positions 4-8 and 13-18 on the sense strand, and positions 6-10 and 15-18 on the antisense strand, counting from the 5′-end of each strand.
41 .- 47 . (canceled)
48 . The dsRNA agent of claim 1 , wherein the lipophilic moiety is an aliphatic, alicyclic, or polyalicyclic compound.
49 . (canceled)
50 . (canceled)
51 . The dsRNA agent of claim 48 , wherein the lipophilic moiety contains a saturated or unsaturated C6-C18 hydrocarbon chain.
52 .- 66 . (canceled)
67 . The dsRNA agent of claim 1 , further comprising a phosphate or phosphate mimic at the 5′-end of the antisense strand.
68 .- 70 . (canceled)
71 . An isolated cell containing the dsRNA agent of claim 1 .
72 . A pharmaceutical composition for inhibiting expression of a STAT6 gene, comprising the dsRNA agent of claim 1 .
73 . (canceled)
74 . A method of inhibiting expression of a STAT6 gene in a cell, the method comprising:
(a) contacting the cell with the dsRNA agent of claim 1 ; and
(b) maintaining the cell produced in step (a) for a time sufficient to obtain degradation of the STAT6 gene, thereby inhibiting expression of the STAT6 gene in the cell.
75 .- 77 . (canceled)
78 . A method of treating a subject having a disorder that would benefit from reduction in signal transducer and activator of transcription factor 6 (STAT6) expression, comprising administering to the subject a therapeutically effective amount of the dsRNA agent of claim 1 , thereby treating the subject having the disorder that would benefit from reduction in STAT6 expression.
79 . (canceled)
80 . The method of claim 78 , wherein the disorder is a STAT-6 associated disorder.
81 . The method of claim 80 , wherein the STAT6-associated disorder is a respiratory disease selected from the group consisting of asthma, chronic obstructive pulmonary disease (COPD), cystic fibrosis, eosinophilic cough, bronchitis, sarcoidosis, pulmonary fibrosis, rhinitis, and sinusitis.
82 .- 93 . (canceled)
94 . A kit, a vial, or a syringe comprising the dsRNA agent of claim 1 .
95 .- 97 . (canceled)