Hearing impairment is the most common sensory deficit. It is frequently caused by the expression of an allele carrying a single dominant missense mutation. Herein, we show that a single intracochlear injection of an artificial microRNA carried in a viral vector can slow progression of hearing loss for up to 35 weeks in the Beethoven mouse, a murine model of non-syndromic human deafness caused by a dominant gain-of-function mutation in Tmc1 (transmembrane channel-like 1). This outcome is noteworthy because it demonstrates the feasibility of RNA-interference-mediated suppression of an endogenous deafness-causing allele to slow progression of hearing loss. Given that most autosomal-dominant non-syndromic hearing loss in humans is caused by this mechanism of action, microRNA-based therapeutics might be broadly applicable as a therapy for this type of deafness.
Journal article
RNA Interference Prevents Autosomal-Dominant Hearing Loss
American journal of human genetics, Vol.98(6), pp.1101-1113
0
06/02/2016
DOI: 10.1016/j.ajhg.2016.03.028
PMCID: PMC4908151
PMID: 27236922
Abstract
Details
- Title: Subtitle
- RNA Interference Prevents Autosomal-Dominant Hearing Loss
- Creators
- Seiji B. Shibata - University of IowaPaul T. Ranum - University of IowaHideaki Moteki - University of IowaBifeng Pan - Harvard Medical SchoolAlexander Goodwin - University of IowaShawn Goodman - University of IowaPaul J. Abbas - University of IowaJeffrey R. Holt - Harvard Medical SchoolRichard J.H. Smith - University of Iowa
- Resource Type
- Journal article
- Publication Details
- American journal of human genetics, Vol.98(6), pp.1101-1113
- Event
- 0
- DOI
- 10.1016/j.ajhg.2016.03.028
- PMID
- 27236922
- PMCID
- PMC4908151
- NLM abbreviation
- Am J Hum Genet
- ISSN
- 1537-6605
- Copyright
- © 2016 The Authors
- Grant note
- Grant support P50 DC000242/DC/NIDCD NIH HHS/United States R01 DC003544/DC/NIDCD NIH HHS/United States T32 DC000040/DC/NIDCD NIH HHS/United States U54 HD090255/HD/NICHD NIH HHS/United States
- Language
- English
- Date published
- 06/02/2016
- Academic Unit
- Roy J. Carver Department of Biomedical Engineering; Communication Sciences and Disorders; Molecular Physiology and Biophysics; Anatomy and Cell Biology; Stead Family Department of Pediatrics; Iowa Neuroscience Institute; Otolaryngology; Internal Medicine; Iowa Institute of Human Genetics
- Record Identifier
- 9983557330102771
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