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Distinct expression and function of whirlin isoforms in the inner ear and retina: an insight into pathogenesis of USH2D and DFNB31
Journal article   Open access  Peer reviewed

Distinct expression and function of whirlin isoforms in the inner ear and retina: an insight into pathogenesis of USH2D and DFNB31

Pranav Dinesh Mathur, Junhuang Zou, Tihua Zheng, Ali Almishaal, Yong Wang, Qian Chen, Le Wang, Deepti Vashist, Steve Brown, Albert Park, …
Human molecular genetics, Vol.24(21), pp.6213-6228
01/11/2015
PMCID: PMC4599678
PMID: 26307081

Abstract

Animals Cochlea - metabolism Hair Cells, Auditory - metabolism Hearing Loss, Sensorineural - genetics Hearing Loss, Sensorineural - metabolism Hearing Loss, Sensorineural - pathology Membrane Proteins - biosynthesis Membrane Proteins - genetics Mice Mice, Mutant Strains Mutation Protein Isoforms - biosynthesis Protein Isoforms - physiology Retina - metabolism RNA, Messenger Stereocilia - pathology Usher Syndromes - genetics Usher Syndromes - metabolism Usher Syndromes - pathology
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https://doi.org/10.1093/hmg/ddv339View
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