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Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl

Like several Rho GDP/GTP exchange factors (GEFs), Kalirin7 (Kal7) contains an N-terminal Sec14 domain and multiple spectrin repeats. A natural splice variant of Kalrn lacking the Sec14 domain and four spectrin repeats is unable to increase spine formation; our goal was to understand the function of...

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Autores principales: Ma, Xin-Ming, Miller, Megan B., Vishwanatha, K. S., Gross, Maegan J., Wang, Yanping, Abbott, Thomas, Lam, TuKiet T., Mains, Richard E., Eipper, Betty A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004595/
https://www.ncbi.nlm.nih.gov/pubmed/24600045
http://dx.doi.org/10.1091/mbc.E13-04-0215
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author Ma, Xin-Ming
Miller, Megan B.
Vishwanatha, K. S.
Gross, Maegan J.
Wang, Yanping
Abbott, Thomas
Lam, TuKiet T.
Mains, Richard E.
Eipper, Betty A.
author_facet Ma, Xin-Ming
Miller, Megan B.
Vishwanatha, K. S.
Gross, Maegan J.
Wang, Yanping
Abbott, Thomas
Lam, TuKiet T.
Mains, Richard E.
Eipper, Betty A.
author_sort Ma, Xin-Ming
collection PubMed
description Like several Rho GDP/GTP exchange factors (GEFs), Kalirin7 (Kal7) contains an N-terminal Sec14 domain and multiple spectrin repeats. A natural splice variant of Kalrn lacking the Sec14 domain and four spectrin repeats is unable to increase spine formation; our goal was to understand the function of the Sec14 and spectrin repeat domains. Kal7 lacking its Sec14 domain still increased spine formation, but the spines were short. Strikingly, Kal7 truncation mutants containing only the Sec14 domain and several spectrin repeats increased spine formation. The Sec14 domain bound phosphoinositides, a minor but crucial component of cellular membranes, and binding was increased by a phosphomimetic mutation. Expression of KalSec14-GFP in nonneuronal cells impaired receptor-mediated endocytosis, linking Kal7 to membrane trafficking. Consistent with genetic studies placing Abl, a non–receptor tyrosine kinase, and the Drosophila orthologue of Kalrn into the same signaling pathway, Abl1 phosphorylated two sites in the fourth spectrin repeat of Kalirin, increasing its sensitivity to calpain-mediated degradation. Treating cortical neurons of the wild-type mouse, but not the Kal7(KO) mouse, with an Abl inhibitor caused an increase in linear spine density. Phosphorylation of multiple sites in the N-terminal Sec14/spectrin region of Kal7 may allow coordination of the many signaling pathways contributing to spine morphogenesis.
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spelling pubmed-40045952014-07-16 Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl Ma, Xin-Ming Miller, Megan B. Vishwanatha, K. S. Gross, Maegan J. Wang, Yanping Abbott, Thomas Lam, TuKiet T. Mains, Richard E. Eipper, Betty A. Mol Biol Cell Articles Like several Rho GDP/GTP exchange factors (GEFs), Kalirin7 (Kal7) contains an N-terminal Sec14 domain and multiple spectrin repeats. A natural splice variant of Kalrn lacking the Sec14 domain and four spectrin repeats is unable to increase spine formation; our goal was to understand the function of the Sec14 and spectrin repeat domains. Kal7 lacking its Sec14 domain still increased spine formation, but the spines were short. Strikingly, Kal7 truncation mutants containing only the Sec14 domain and several spectrin repeats increased spine formation. The Sec14 domain bound phosphoinositides, a minor but crucial component of cellular membranes, and binding was increased by a phosphomimetic mutation. Expression of KalSec14-GFP in nonneuronal cells impaired receptor-mediated endocytosis, linking Kal7 to membrane trafficking. Consistent with genetic studies placing Abl, a non–receptor tyrosine kinase, and the Drosophila orthologue of Kalrn into the same signaling pathway, Abl1 phosphorylated two sites in the fourth spectrin repeat of Kalirin, increasing its sensitivity to calpain-mediated degradation. Treating cortical neurons of the wild-type mouse, but not the Kal7(KO) mouse, with an Abl inhibitor caused an increase in linear spine density. Phosphorylation of multiple sites in the N-terminal Sec14/spectrin region of Kal7 may allow coordination of the many signaling pathways contributing to spine morphogenesis. The American Society for Cell Biology 2014-05-01 /pmc/articles/PMC4004595/ /pubmed/24600045 http://dx.doi.org/10.1091/mbc.E13-04-0215 Text en © 2014 Ma, Miller, et al. This article is distributed by The American Society for Cell Biology under license from the author(s). Two months after publication it is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0). “ASCB®,” “The American Society for Cell Biology®,” and “Molecular Biology of the Cell®” are registered trademarks of The American Society of Cell Biology.
spellingShingle Articles
Ma, Xin-Ming
Miller, Megan B.
Vishwanatha, K. S.
Gross, Maegan J.
Wang, Yanping
Abbott, Thomas
Lam, TuKiet T.
Mains, Richard E.
Eipper, Betty A.
Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title_full Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title_fullStr Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title_full_unstemmed Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title_short Nonenzymatic domains of Kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and Abl
title_sort nonenzymatic domains of kalirin7 contribute to spine morphogenesis through interactions with phosphoinositides and abl
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004595/
https://www.ncbi.nlm.nih.gov/pubmed/24600045
http://dx.doi.org/10.1091/mbc.E13-04-0215
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