Compositions and methods for gene replacement
The present invention features a dual vector system for disrupting and replacing a target gene comprising a mutation (e.g., dominant, recessive mutation). Embodiments of the invention may also provide compositions comprising the dual vector system, and methods of using the dual vector system, including but not limited to methods of modifying the genome of a cell, methods of genomic editing, and methods of treating cells or a subject suffering from a genetic disease comprising a mutation.
1 . A dual vector system comprising:
a first vector comprising:
a polynucleotide encoding a Cas9-KKH polypeptide,
wherein the first vector does not comprise a polynucleotide encoding a guide RNA (gRNA); and
a second vector comprising:
a polynucleotide encoding a guide RNA (gRNA) that binds a target gene comprising a mutation, and
a polynucleotide encoding a wild-type version of the target gene,
wherein the gRNA is selected from the group consisting of: gRNA 12 (SEQ ID NO: 15), gRNA 15 (SEQ ID NO: 18), and gRNA 16 (SEQ ID NO: 23).
2 . The dual vector system of claim 1 , wherein one or both vectors comprises at least one promoter.
3 . The dual vector system of claim 2 , wherein the at least one promoter is selected from: Espin promoter, a protocadherin 15 (PCDH15) promoter, a protein tyrosine phosphatase receptor type Q (PTPRQ) promoter, a myosin VI (Myo6) promoter, a Potassium Voltage-Gated Channel Subfamily Q Member 4 (KCNQ4) promoter, a myosin VIIA (Myo7a) promoter, a synapsin promoter, a glial fibrillary acidic protein (GFAP) promoter, a cytomegalovirus (CMV) promoter, a CMV enhancer, chicken beta-Actin promoter and rabbit beta-Globin splice acceptor site (CAG) promoter, a chicken β-actin (CBA) promoter, a CBH promoter, a U6, type III RNA polymerase promoter, and a tetraspan membrane protein of hair cell stereocilia (TMHS) or lipoma HMGIC fusion partner-like 5 (LHFPL5) promoter.
4 . The dual vector system of claim 1 , wherein the target gene comprises a mutation associated with a disease or condition.
5 . The dual vector system of claim 1 , wherein the target gene is TMC1.
6 . The dual vector system of claim 1 , wherein the mutation is associated with hearing loss.
7 . The dual vector system of claim 1 , wherein the mutation is DFNA36.
8 . The dual vector system of claim 1 , wherein the Cas9-KKH is SaCas9-KKH or SpCas9-KKH.
9 . A dual vector system comprising:
a) a first AAV9-PHP.B vector comprising a nucleotide sequence encoding Cas9-KKH,
wherein the first AAV9-PHP.B vector does not comprise a polynucleotide encoding a guide RNA (gRNA); and
b) a second AAV9-PHP.B vector comprising a nucleotide sequence encoding a guide RNA that binds a TMC1 gene comprising a DFNA36 mutation and a polynucleotide encoding a wild-type TMC1 gene,
wherein the gRNA is selected from the group consisting gRNA 12 (SEQ ID NO: 15), gRNA 15 (SEQ ID NO: 18), and gRNA 16 (SEQ ID NO: 23).
10 . A composition comprising the dual vector system of claim 1 .
11 . A method of modifying the genome of a cell, the method comprising contacting the cell with the dual vector system of claim 1 .
12 . A method of genome editing, the method comprising contacting a cell with the dual vector system of claim 1 .
13 . A method of treating a subject suffering from a genetic disease, the method comprising administering to the subject in need thereof, the dual vector system of claim 1 .
14 . The method of claim 13 , wherein the genetic disease is an autosomal dominant disease.
15 . The method of claim 13 , wherein the genetic disease is DFNA36 hearing loss.
16 . The method of claim 13 , wherein the target gene is TMC1.
17 . The method of claim 13 , wherein the administering step comprises contacting inner ear cells with the dual vector system.
18 . The method of claim 1 , wherein administering occurs by injecting.