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Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells

Dynamins are large GTPases that oligomerize along membranes. Dynamin's membrane fission activity is believed to underlie many of its physiological functions in membrane trafficking. Previously, we reported that DYN-1 (Caenorhabditis elegans dynamin) drove the engulfment and degradation of apopt...

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Autores principales: He, Bin, Yu, Xiaomeng, Margolis, Moran, Liu, Xianghua, Leng, Xiaohong, Etzion, Yael, Zheng, Fei, Lu, Nan, Quiocho, Florante A., Danino, Dganit, Zhou, Zheng
Formato: Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2820425/
https://www.ncbi.nlm.nih.gov/pubmed/20016007
http://dx.doi.org/10.1091/mbc.E09-05-0440
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author He, Bin
Yu, Xiaomeng
Margolis, Moran
Liu, Xianghua
Leng, Xiaohong
Etzion, Yael
Zheng, Fei
Lu, Nan
Quiocho, Florante A.
Danino, Dganit
Zhou, Zheng
author_facet He, Bin
Yu, Xiaomeng
Margolis, Moran
Liu, Xianghua
Leng, Xiaohong
Etzion, Yael
Zheng, Fei
Lu, Nan
Quiocho, Florante A.
Danino, Dganit
Zhou, Zheng
author_sort He, Bin
collection PubMed
description Dynamins are large GTPases that oligomerize along membranes. Dynamin's membrane fission activity is believed to underlie many of its physiological functions in membrane trafficking. Previously, we reported that DYN-1 (Caenorhabditis elegans dynamin) drove the engulfment and degradation of apoptotic cells through promoting the recruitment and fusion of intracellular vesicles to phagocytic cups and phagosomes, an activity distinct from dynamin's well-known membrane fission activity. Here, we have detected the oligomerization of DYN-1 in living C. elegans embryos and identified DYN-1 mutations that abolish DYN-1's oligomerization or GTPase activities. Specifically, abolishing self-assembly destroys DYN-1's association with the surfaces of extending pseudopods and maturing phagosomes, whereas inactivating guanosine triphosphate (GTP) binding blocks the dissociation of DYN-1 from these membranes. Abolishing the self-assembly or GTPase activities of DYN-1 leads to common as well as differential phagosomal maturation defects. Whereas both types of mutations cause delays in the transient enrichment of the RAB-5 GTPase to phagosomal surfaces, only the self-assembly mutation but not GTP binding mutation causes failure in recruiting the RAB-7 GTPase to phagosomal surfaces. We propose that during cell corpse removal, dynamin's self-assembly and GTP hydrolysis activities establish a precise dynamic control of DYN-1's transient association to its target membranes and that this control mechanism underlies the dynamic recruitment of downstream effectors to target membranes.
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spelling pubmed-28204252010-04-30 Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells He, Bin Yu, Xiaomeng Margolis, Moran Liu, Xianghua Leng, Xiaohong Etzion, Yael Zheng, Fei Lu, Nan Quiocho, Florante A. Danino, Dganit Zhou, Zheng Mol Biol Cell Articles Dynamins are large GTPases that oligomerize along membranes. Dynamin's membrane fission activity is believed to underlie many of its physiological functions in membrane trafficking. Previously, we reported that DYN-1 (Caenorhabditis elegans dynamin) drove the engulfment and degradation of apoptotic cells through promoting the recruitment and fusion of intracellular vesicles to phagocytic cups and phagosomes, an activity distinct from dynamin's well-known membrane fission activity. Here, we have detected the oligomerization of DYN-1 in living C. elegans embryos and identified DYN-1 mutations that abolish DYN-1's oligomerization or GTPase activities. Specifically, abolishing self-assembly destroys DYN-1's association with the surfaces of extending pseudopods and maturing phagosomes, whereas inactivating guanosine triphosphate (GTP) binding blocks the dissociation of DYN-1 from these membranes. Abolishing the self-assembly or GTPase activities of DYN-1 leads to common as well as differential phagosomal maturation defects. Whereas both types of mutations cause delays in the transient enrichment of the RAB-5 GTPase to phagosomal surfaces, only the self-assembly mutation but not GTP binding mutation causes failure in recruiting the RAB-7 GTPase to phagosomal surfaces. We propose that during cell corpse removal, dynamin's self-assembly and GTP hydrolysis activities establish a precise dynamic control of DYN-1's transient association to its target membranes and that this control mechanism underlies the dynamic recruitment of downstream effectors to target membranes. The American Society for Cell Biology 2010-02-15 /pmc/articles/PMC2820425/ /pubmed/20016007 http://dx.doi.org/10.1091/mbc.E09-05-0440 Text en © 2010 by The American Society for Cell Biology
spellingShingle Articles
He, Bin
Yu, Xiaomeng
Margolis, Moran
Liu, Xianghua
Leng, Xiaohong
Etzion, Yael
Zheng, Fei
Lu, Nan
Quiocho, Florante A.
Danino, Dganit
Zhou, Zheng
Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title_full Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title_fullStr Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title_full_unstemmed Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title_short Live-Cell Imaging in Caenorhabditis elegans Reveals the Distinct Roles of Dynamin Self-Assembly and Guanosine Triphosphate Hydrolysis in the Removal of Apoptotic Cells
title_sort live-cell imaging in caenorhabditis elegans reveals the distinct roles of dynamin self-assembly and guanosine triphosphate hydrolysis in the removal of apoptotic cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2820425/
https://www.ncbi.nlm.nih.gov/pubmed/20016007
http://dx.doi.org/10.1091/mbc.E09-05-0440
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