Complement Factor B-modulating compositions and methods of use thereof
Aspects of the disclosure provide compounds, compositions, and methods for modulating the expression or activity of Complement Factor B (CFB). In certain aspects, the compounds, compositions, and methods of the disclosure can be used to reduce the expression of CFB mRNA in a cell or animal. In certain aspects, the compounds, compositions, and methods of the disclosure can be used to reduce the expression of CFB protein in a cell or animal.
1 . A compound comprising a first modified oligonucleotide 14 to 23 linked nucleosides in length having a nucleobase sequence comprising at least 14, at least 15, at least 16, at least 17, at least 18, at least 19, or at least 20 contiguous nucleobases of the nucleobase sequence of SEQ ID NO: 109 and a second modified oligonucleotide 14 to 23 linked nucleosides in length having a region of complementarity to the first modified oligonucleotide, wherein one or more GalNAc are attached to the first modified oligonucleotide, wherein the 5′ nucleoside of the first modified oligonucleotide is of the following formula:
wherein:
R 9 is H, adenine, guanine, thymine, cytosine, uracil, adenine comprising a protecting group (PG), guanine comprising a PG, thymine comprising a PG, cytosine comprising a PG, uracil comprising a PG, a modified nucleobase, optionally substituted alkyl, optionally substituted aryl, optionally substituted heteroaryl, optionally substituted carbocyclyl, optionally substituted heterocyclyl, or a nucleobase isostere;
L is a bond, a phosphodiester bond, a phosphorothioate bond, a triazole, a tetrazole, an amide, a reverse-amide, a carbamate, a carbonate, urea, alkyl, or heteroalkyl;
R 2 is an oligonucleotide sequence or modified oligonucleotide;
Y 1 is O, CH 2 , CH 2 O, or optionally substituted NH;
Y 2 is O, CH 2 , CH 2 O, or optionally substituted NH;
Y 3 is CO, SO 2 , P (O) O, CH 2 —O—C(O), CH 2 —NH—C(O), CH 2 —NH—SO 2 , or CH 2 ;
Y 4 is CO, SO 2 , P (O) O, CH 2 —O—C(O), CH 2 —NH—C(O), CH 2 —NH—SO 2 , or CH 2 ;
n 2 is 0, 1, 2, 3, 4, 5, or 6; and
each n 1 , n 3 , n 4 and n 5 is independently 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, or 10.
2 . The compound of claim 1 , wherein the first modified oligonucleotide is 23 linked nucleosides in length having a nucleobase sequence comprising the nucleobase sequence of SEQ ID NO: 109.
3 . The compound of claim 2 , wherein the region of complementarity between the first modified oligonucleotide and the second modified oligonucleotide is 19 to 23 linked nucleosides in length.
4 . The compound of claim 1 , wherein at least one internucleoside linkage of the first or second modified oligonucleotide is a phosphorothioate internucleoside linkage or a methylphosphonate internucleoside linkage.
5 . The compound of claim 4 , wherein the phosphorothioate internucleoside linkage or methylphosphonate internucleoside linkage is at the 3′ terminus of the first or second modified oligonucleotide or at the 5′ terminus of the first or second modified oligonucleotide.
6 . The compound of claim 1 , wherein the first or second modified oligonucleotide comprises a modification selected from the group consisting of LNA, cEt, 2′-MOE, 2′-F, 2′-OMe, and 2′-deoxy, or a combination thereof.
7 . The compound of claim 1 , wherein the first modified oligonucleotide comprises no more than five 2′-F sugar modifications.
8 . The compound of claim 1 , wherein the second modified oligonucleotide is 14 to 22 linked nucleosides in length having a nucleobase sequence comprising at least 14 contiguous nucleobases of the nucleobase sequence of SEQ ID NO: 100.
9 . The compound of claim 1 , wherein the first modified oligonucleotide consists of Ref ID NO: IS1252 having the formula:
H4*mG*mG.mA.mA.mG.mG.mA.fU.mU.fA.fU.fC.fU.mG.mG.mA.mU.mG.mU.mC.mU*mA*dQ (SEQ ID NO: 109),
wherein:
‘A’ is a nucleoside having an adenine nucleobase, ‘G’ is a nucleoside having a guanine nucleobase, ‘C’ is a nucleoside having a cytosine nucleobase, and ‘U’ is a nucleoside having a uracil nucleobase;
‘m’ is a 2′-O-methyl sugar modification;
‘f’ is a 2′-F sugar modification;
‘*’ is a phosphorothioate internucleoside linkage;
‘.’ is a phosphate internucleoside linkage;
‘dQ’ is an inverted abasic deoxyribose; and
‘H4*’ is of the formula:
10 . The compound of claim 1 , wherein the second modified oligonucleotide consists of Ref ID NO: IA1016 having the formula:
mU*fA*mG.fA.mC.fA.mU.fC.mC.fA.mG.fA.mU.fA.mA.fU.mC.fC.mU.fU*mC*mC (SEQ ID NO: 100),
wherein:
‘A’ is a nucleoside having an adenine nucleobase, ‘G’ is a nucleoside having a guanine nucleobase, ‘C’ is a nucleoside having a cytosine nucleobase, and ‘U’ is a nucleoside having a uracil nucleobase;
‘m’ is a 2′-O-methyl sugar modification;
‘f’ is a 2′-F sugar modification;
‘*’ is a phosphorothioate internucleoside linkage; and
‘.’ is a phosphate internucleoside linkage.
11 . The compound of claim 8 , wherein the compound is of the following chemical structure:
or a pharmaceutically acceptable salt or stereoisomer thereof.
12 . The compound of claim 11 , wherein the pharmaceutically acceptable salt is a sodium salt or a potassium salt.
13 . The compound of claim 12 , which is a sodium salt according to the following chemical structure:
or a stereoisomer thereof.
14 . A composition comprising the compound of claim 11 and a pharmaceutically acceptable carrier.
15 . A composition comprising the compound of claim 1 and a pharmaceutically acceptable carrier.
16 . A method comprising administering the compound of claim 1 to a subject in need thereof.
17 . The method of claim 16 , wherein administering the compound inhibits, reduces, and/or improves a disease, disorder, condition or a symptom thereof associated with Complement Factor B (CFB).
18 . A method of inhibiting expression of CFB in a cell comprising contacting the cell with the compound of claim 1 , thereby inhibiting expression of CFB in the cell.
19 . The method of claim 18 , wherein the cell is in the liver of an individual.