EXON SKIPPING COMPOSITIONS FOR TREATING MUSCULAR DYSTROPHY
Antisense molecules capable of binding to a selected target site in the human dystrophin gene to induce exon 53 skipping are described.
1 . An isolated antisense oligonucleotide of 20 to 50 nucleotides in length comprising at least 20 consecutive nucleotides complementary to an exon 53 target region of the dystrophin gene designated as an annealing site H53A(+33+60), wherein the oligonucleotide comprises a non-natural backbone and specifically hybridizes to an exon 53 target region of the Dystrophin gene and induces exon 53 skipping.
2 . The antisense oligonucleotide of claim 1 , comprising a nucleotide sequence set forth in SEQ ID NO: 1, wherein thymine bases are optionally uracil bases.
3 . The antisense oligonucleotide of claim 1 , consisting of a nucleotide sequence set forth in SEQ ID NO: 1.
4 . The antisense oligonucleotide of claim 1 , wherein the oligonucleotide does not activate RNase H.
5 . The antisense oligonucleotide of claim 1 , comprising a non-natural backbone.
6 . The antisense oligonucleotide of claim 1 , wherein the sugar moieties of the oligonucleotide backbone are replaced with non-natural moieties.
7 . The antisense oligonucleotide of claim 6 , wherein the non-natural moieties are morpholinos.
8 . The antisense oligonucleotide of claim 1 , wherein the inter-nucleotide linkages of the oligonucleotide backbone are replaced with non-natural inter-nucleotide linkages.
9 . (canceled)
10 . The antisense oligonucleotide of claim 1 , wherein the sugar moieties of the oligonucleotide backbone are replaced with non-natural moieties and the inter-nucleotide linkages of the oligonucleotide backbone are replaced with non-natural inter-nucleotide linkages.
11 . The antisense oligonucleotide of claim 10 , wherein the non-natural moieties are morpholinos and the non-natural internucleotide linkages are modified phosphates.
12 . (canceled)
13 . The antisense oligonucleotide of claim 1 , wherein the oligonucleotide is a 2′-O-methyl-oligoribonucleotide.
14 . The antisense oligonucleotide of claim 1 , wherein the oligonucleotide is a peptide nucleic acid.
15 . The antisense oligonucleotide of claim 1 , wherein the oligonucleotide is chemically linked to one or more moieties or conjugates that enhance the activity, cellular distribution, or cellular uptake of the antisense oligonucleotide.
16 . The antisense oligonucleotide of claim 15 , wherein the oligonucleotide is chemically linked to an arginine-rich cell penetrating peptide.
17 . The antisense oligonucleotide of claim 15 , wherein the oligonucleotide is chemically linked to a polyethylene glycol moiety.
18 . The antisense oligonucleotide of claim 1 , wherein at least one pyrimidine base of the oligonucleotide comprises a 5-substituted pyrimidine base.
19 . The antisense oligonucleotide of claim 18 , wherein the pyrimidine base is selected from the group consisting of cytosine, thymine and uracil.
20 . The antisense oligonucleotide of claim 18 , wherein the 5-substituted pyrimidine base is 5-methylcytosine.
21 - 23 . (canceled)
24 . A pharmaceutical composition, comprising an antisense oligonucleotide of 20 to 50 nucleotides in length comprising at least 20 consecutive nucleotides complementary to an exon 53 target region of the dystrophin gene designated as an annealing site H53A(+33+60), and a saline solution that includes a phosphate buffer, wherein the oligonucleotide specifically hybridizes to an exon 53 target region of the Dystrophin gene and induces exon 53 skipping.
25 . A method of treating Duchenne muscular dystrophy, comprising administering to a patient in need thereof an effective amount of an antisense oligonucleotide of 20 to 50 nucleotides in length comprising at least 20 consecutive nucleotides complementary to an exon 53 target region of the dystrophin gene designated as an annealing site H53A(+33+60) wherein the oligonucleotide specifically hybridizes to an exon 53 target region of the Dystrophin gene and induces exon 53 skipping.
26 - 28 . (canceled)