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Disruption of Src Is Associated with Phenotypes...
Journal article

Disruption of Src Is Associated with Phenotypes Related to Williams-Beuren Syndrome and Altered Cellular Localization of TFII-I1,2

Abstract

Src is a nonreceptor protein tyrosine kinase that is expressed widely throughout the central nervous system and is involved in diverse biological functions. Mice homozygous for a spontaneous mutation in Src (Src (thl/thl) ) exhibited hypersociability and hyperactivity along with impairments in visuospatial, amygdala-dependent, and motor learning as well as an increased startle response to loud tones. The phenotype of Src (thl/thl) mice showed significant overlap with Williams-Beuren syndrome (WBS), a disorder caused by the deletion of several genes, including General Transcription Factor 2-I (GTF2I). Src phosphorylation regulates the movement of GTF2I protein (TFII-I) between the nucleus, where it is a transcriptional activator, and the cytoplasm, where it regulates trafficking of transient receptor potential cation channel, subfamily C, member 3 (TRPC3) subunits to the plasma membrane. Here, we demonstrate altered cellular localization of both TFII-I and TRPC3 in the Src mutants, suggesting that disruption of Src can phenocopy behavioral phenotypes observed in WBS through its regulation of TFII-I.

Authors

Sinai L; Ivakine EA; Lam E; Deurloo M; Dida J; Zirngibl RA; Jung C; Aubin JE; Feng Z-P; Yeomans J

Journal

eNeuro, Vol. 2, No. 2, pp. eneuro.0016–eneu14.2015

Publisher

Society for Neuroscience

Publication Date

March 1, 2015

DOI

10.1523/eneuro.0016-14.2015

ISSN

2373-2822

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