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The RNA‐binding protein caper is required for sensory neuron development in Drosophila melanogaster
Author(s) -
Olesnicky Eugenia C.,
Bono Jeremy M.,
Bell Laura,
Schachtner Logan T.,
Lybecker Meghan C.
Publication year - 2017
Publication title -
developmental dynamics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.634
H-Index - 141
eISSN - 1097-0177
pISSN - 1058-8388
DOI - 10.1002/dvdy.24523
Subject(s) - biology , drosophila melanogaster , alternative splicing , rna splicing , rna binding protein , neurogenesis , splicing factor , gene , genetics , microbiology and biotechnology , morphogenesis , circular rna , rna , exon
Background : Alternative splicing mediated by RNA‐binding proteins (RBPs) is emerging as a fundamental mechanism for the regulation of gene expression. Alternative splicing has been shown to be a widespread phenomenon that facilitates the diversification of gene products in a tissue‐specific manner. Although defects in alternative splicing are rooted in many neurological disorders, only a small fraction of splicing factors have been investigated in detail. Results : We find that the splicing factor Caper is required for the development of multiple different mechanosensory neuron subtypes at multiple life stages in Drosophila melanogaster . Disruption of Caper function causes defects in dendrite morphogenesis of larval dendrite arborization neurons and neuronal positioning of embryonic proprioceptors, as well as the development and maintenance of adult mechanosensory bristles. Additionally, we find that Caper dysfunction results in aberrant locomotor behavior in adult flies. Transcriptome‐wide analyses further support a role for Caper in alternative isoform regulation of genes that function in neurogenesis. Conclusions : Our results provide the first evidence for a fundamental and broad requirement for the highly conserved splicing factor Caper in the development and maintenance of the nervous system and provide a framework for future studies on the detailed mechanism of Caper‐mediated RNA regulation. Developmental Dynamics 246:610–624, 2017 . © 2017 Wiley Periodicals, Inc.

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