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Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s

Intersectin-1s (ITSN-1s), a five Src homology 3 (SH3) domain-containing protein, is critically required for caveolae and clathrin-mediated endocytosis (CME), due to its interactions with dynamin (dyn). Of the five SH3A-E domains, SH3A is unique because of its high affinity for dyn and potent inhibit...

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Autores principales: Knezevic, Ivana, Predescu, Dan, Bardita, Cristina, Wang, Minhua, Sharma, Tiffany, Keith, Barbara, Neamu, Radu, Malik, Asrar B, Predescu, Sanda
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3072443/
https://www.ncbi.nlm.nih.gov/pubmed/21129155
http://dx.doi.org/10.1111/j.1582-4934.2010.01226.x
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author Knezevic, Ivana
Predescu, Dan
Bardita, Cristina
Wang, Minhua
Sharma, Tiffany
Keith, Barbara
Neamu, Radu
Malik, Asrar B
Predescu, Sanda
author_facet Knezevic, Ivana
Predescu, Dan
Bardita, Cristina
Wang, Minhua
Sharma, Tiffany
Keith, Barbara
Neamu, Radu
Malik, Asrar B
Predescu, Sanda
author_sort Knezevic, Ivana
collection PubMed
description Intersectin-1s (ITSN-1s), a five Src homology 3 (SH3) domain-containing protein, is critically required for caveolae and clathrin-mediated endocytosis (CME), due to its interactions with dynamin (dyn). Of the five SH3A-E domains, SH3A is unique because of its high affinity for dyn and potent inhibition of CME. However, the molecular mechanism by which SH3A integrates in the overall function of ITSN-1s to regulate the endocytic process is not understood. Using biochemical and functional approaches as well as high-resolution electron microscopy, we show that SH3A exogenously expressed in human lung endothelial cells caused abnormal endocytic structures, distorted caveolae clusters, frequent staining-dense rings around the caveolar necks and 60% inhibition of caveolae internalization. In vitro studies further revealed that SH3A, similar to full-length ITSN-1s stimulates dyn2 oligomerization and guanosine triphosphatase (GTP)ase activity, effects not detected when other SH3 domains of ITSN-1s were used as controls. Strikingly, in the presence of SH3A, dyn2–dyn2 interactions are stabilized and despite continuous GTP hydrolysis, dyn2 oligomers cannot disassemble. SH3A may hold up caveolae release from the plasma membrane and formation of free-transport vesicles, by prolonging the lifetime of assembled dyn2. Altogether, our results indicate that ITSN-1s, via its SH3A has the unique ability to regulate dyn2 assembly–disassembly and function during endocytosis.
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spelling pubmed-30724432012-11-01 Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s Knezevic, Ivana Predescu, Dan Bardita, Cristina Wang, Minhua Sharma, Tiffany Keith, Barbara Neamu, Radu Malik, Asrar B Predescu, Sanda J Cell Mol Med Original Articles Intersectin-1s (ITSN-1s), a five Src homology 3 (SH3) domain-containing protein, is critically required for caveolae and clathrin-mediated endocytosis (CME), due to its interactions with dynamin (dyn). Of the five SH3A-E domains, SH3A is unique because of its high affinity for dyn and potent inhibition of CME. However, the molecular mechanism by which SH3A integrates in the overall function of ITSN-1s to regulate the endocytic process is not understood. Using biochemical and functional approaches as well as high-resolution electron microscopy, we show that SH3A exogenously expressed in human lung endothelial cells caused abnormal endocytic structures, distorted caveolae clusters, frequent staining-dense rings around the caveolar necks and 60% inhibition of caveolae internalization. In vitro studies further revealed that SH3A, similar to full-length ITSN-1s stimulates dyn2 oligomerization and guanosine triphosphatase (GTP)ase activity, effects not detected when other SH3 domains of ITSN-1s were used as controls. Strikingly, in the presence of SH3A, dyn2–dyn2 interactions are stabilized and despite continuous GTP hydrolysis, dyn2 oligomers cannot disassemble. SH3A may hold up caveolae release from the plasma membrane and formation of free-transport vesicles, by prolonging the lifetime of assembled dyn2. Altogether, our results indicate that ITSN-1s, via its SH3A has the unique ability to regulate dyn2 assembly–disassembly and function during endocytosis. Blackwell Publishing Ltd 2011-11 2011-10-24 /pmc/articles/PMC3072443/ /pubmed/21129155 http://dx.doi.org/10.1111/j.1582-4934.2010.01226.x Text en © 2011 The Authors Journal of Cellular and Molecular Medicine © 2011 Foundation for Cellular and Molecular Medicine/Blackwell Publishing Ltd
spellingShingle Original Articles
Knezevic, Ivana
Predescu, Dan
Bardita, Cristina
Wang, Minhua
Sharma, Tiffany
Keith, Barbara
Neamu, Radu
Malik, Asrar B
Predescu, Sanda
Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title_full Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title_fullStr Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title_full_unstemmed Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title_short Regulation of dynamin-2 assembly–disassembly and function through the SH3A domain of intersectin-1s
title_sort regulation of dynamin-2 assembly–disassembly and function through the sh3a domain of intersectin-1s
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3072443/
https://www.ncbi.nlm.nih.gov/pubmed/21129155
http://dx.doi.org/10.1111/j.1582-4934.2010.01226.x
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