Isoform and splice-variant specific functions of dynamin-2 revealed by analysis of conditional knock-out cells

Dynamin (Dyn) is a multifunctional GTPase implicated in several cellular events, including endocytosis, intracellular trafficking, cell signaling, and cytokinesis. The mammalian genome encodes three isoforms, Dyn1, Dyn2, and Dyn3, and several splice variants of each, leading to the suggestion that d...

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Published inMolecular biology of the cell Vol. 19; no. 12; pp. 5347 - 5359
Main Authors Liu, Ya-Wen, Surka, Mark C, Schroeter, Thomas, Lukiyanchuk, Vasyl, Schmid, Sandra L
Format Journal Article
LanguageEnglish
Published United States The American Society for Cell Biology 01.12.2008
SeriesAn InCytes from MBC Selection
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Abstract Dynamin (Dyn) is a multifunctional GTPase implicated in several cellular events, including endocytosis, intracellular trafficking, cell signaling, and cytokinesis. The mammalian genome encodes three isoforms, Dyn1, Dyn2, and Dyn3, and several splice variants of each, leading to the suggestion that distinct isoforms and/or distinct splice variants might mediate distinct cellular functions. We generated a conditional Dyn2 KO cell line and performed knockout and reconstitution experiments to explore the isoform- and splice variant specific cellular functions of ubiquitously expressed Dyn2. We find that Dyn2 is required for clathrin-mediated endocytosis (CME), p75 export from the Golgi, and PDGF-stimulated macropinocytosis and cytokinesis, but not for other endocytic pathways. Surprisingly, CME and p75 exocytosis were efficiently rescued by reintroduction of Dyn2, but not Dyn1, suggesting that these two isoforms function differentially in vesicular trafficking in nonneuronal cells. Both isoforms rescued macropinocytosis and cytokinesis, suggesting that dynamin function in these processes might be mechanistically distinct from its role in CME. Although all four Dyn2 splice variants could equally restore CME, Dyn2ba and -bb were more effective at restoring p75 exocytosis. This splice variant specificity correlated with their differential targeting to the Golgi. These studies reveal isoform and splice-variant specific functions for Dyn2.
AbstractList Dynamin (Dyn) is a multifunctional GTPase implicated in several cellular events, including endocytosis, intracellular trafficking, cell signaling, and cytokinesis. The mammalian genome encodes three isoforms, Dyn1, Dyn2, and Dyn3, and several splice variants of each, leading to the suggestion that distinct isoforms and/or distinct splice variants might mediate distinct cellular functions. We generated a conditional Dyn2 KO cell line and performed knockout and reconstitution experiments to explore the isoform- and splice variant specific cellular functions of ubiquitously expressed Dyn2. We find that Dyn2 is required for clathrin-mediated endocytosis (CME), p75 export from the Golgi, and PDGF-stimulated macropinocytosis and cytokinesis, but not for other endocytic pathways. Surprisingly, CME and p75 exocytosis were efficiently rescued by reintroduction of Dyn2, but not Dyn1, suggesting that these two isoforms function differentially in vesicular trafficking in nonneuronal cells. Both isoforms rescued macropinocytosis and cytokinesis, suggesting that dynamin function in these processes might be mechanistically distinct from its role in CME. Although all four Dyn2 splice variants could equally restore CME, Dyn2ba and -bb were more effective at restoring p75 exocytosis. This splice variant specificity correlated with their differential targeting to the Golgi. These studies reveal isoform and splice-variant specific functions for Dyn2.
Author Schmid, Sandra L
Surka, Mark C
Lukiyanchuk, Vasyl
Liu, Ya-Wen
Schroeter, Thomas
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/18923138$$D View this record in MEDLINE/PubMed
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Snippet Dynamin (Dyn) is a multifunctional GTPase implicated in several cellular events, including endocytosis, intracellular trafficking, cell signaling, and...
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SubjectTerms Alternative Splicing
Amino Acid Sequence
Animals
Cell Line
Cell Shape
Clathrin - metabolism
Cytokinesis - physiology
Dynamin I - genetics
Dynamin I - metabolism
Dynamin II - genetics
Dynamin II - metabolism
Embryonic Stem Cells - cytology
Embryonic Stem Cells - physiology
Endocytosis - physiology
Mice
Mice, Knockout
Molecular Sequence Data
Protein Isoforms - genetics
Protein Isoforms - metabolism
Receptor, Nerve Growth Factor - metabolism
Recombinant Fusion Proteins - genetics
Recombinant Fusion Proteins - metabolism
trans-Golgi Network - metabolism
Title Isoform and splice-variant specific functions of dynamin-2 revealed by analysis of conditional knock-out cells
URI https://www.ncbi.nlm.nih.gov/pubmed/18923138
https://search.proquest.com/docview/69844782
https://pubmed.ncbi.nlm.nih.gov/PMC2592655
Volume 19
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