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MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis

Diverse cellular processes, including multivesicular body formation, cytokinesis, and viral budding, require the sequential functions of endosomal sorting complexes required for transport (ESCRTs) 0 to III. Of these multiprotein complexes, ESCRT-III in particular plays a key role in mediating membra...

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Autores principales: Lee, Seongju, Chang, Jaerak, Renvoisé, Benoît, Tipirneni, Anita, Yang, Sarah, Blackstone, Craig
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Cell Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496609/
https://www.ncbi.nlm.nih.gov/pubmed/23015756
http://dx.doi.org/10.1091/mbc.E12-04-0292
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author Lee, Seongju
Chang, Jaerak
Renvoisé, Benoît
Tipirneni, Anita
Yang, Sarah
Blackstone, Craig
author_facet Lee, Seongju
Chang, Jaerak
Renvoisé, Benoît
Tipirneni, Anita
Yang, Sarah
Blackstone, Craig
author_sort Lee, Seongju
collection PubMed
description Diverse cellular processes, including multivesicular body formation, cytokinesis, and viral budding, require the sequential functions of endosomal sorting complexes required for transport (ESCRTs) 0 to III. Of these multiprotein complexes, ESCRT-III in particular plays a key role in mediating membrane fission events by forming large, ring-like helical arrays. A number of proteins playing key effector roles, most notably the ATPase associated with diverse cellular activities protein VPS4, harbor present in microtubule-interacting and trafficking molecules (MIT) domains comprising asymmetric three-helical bundles, which interact with helical MIT-interacting motifs in ESCRT-III subunits. Here we assess comprehensively the ESCRT-III interactions of the MIT-domain family member MITD1 and identify strong interactions with charged multivesicular body protein 1B (CHMP1B), CHMP2A, and increased sodium tolerance-1 (IST1). We show that these ESCRT-III subunits are important for the recruitment of MITD1 to the midbody and that MITD1 participates in the abscission phase of cytokinesis. MITD1 also dimerizes through its C-terminal domain. Both types of interactions appear important for the role of MITD1 in negatively regulating the interaction of IST1 with VPS4. Because IST1 binding in turn regulates VPS4, MITD1 may function through downstream effects on the activity of VPS4, which plays a critical role in the processing and remodeling of ESCRT filaments in abscission.
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spelling pubmed-34966092013-01-30 MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis Lee, Seongju Chang, Jaerak Renvoisé, Benoît Tipirneni, Anita Yang, Sarah Blackstone, Craig Mol Biol Cell Articles Diverse cellular processes, including multivesicular body formation, cytokinesis, and viral budding, require the sequential functions of endosomal sorting complexes required for transport (ESCRTs) 0 to III. Of these multiprotein complexes, ESCRT-III in particular plays a key role in mediating membrane fission events by forming large, ring-like helical arrays. A number of proteins playing key effector roles, most notably the ATPase associated with diverse cellular activities protein VPS4, harbor present in microtubule-interacting and trafficking molecules (MIT) domains comprising asymmetric three-helical bundles, which interact with helical MIT-interacting motifs in ESCRT-III subunits. Here we assess comprehensively the ESCRT-III interactions of the MIT-domain family member MITD1 and identify strong interactions with charged multivesicular body protein 1B (CHMP1B), CHMP2A, and increased sodium tolerance-1 (IST1). We show that these ESCRT-III subunits are important for the recruitment of MITD1 to the midbody and that MITD1 participates in the abscission phase of cytokinesis. MITD1 also dimerizes through its C-terminal domain. Both types of interactions appear important for the role of MITD1 in negatively regulating the interaction of IST1 with VPS4. Because IST1 binding in turn regulates VPS4, MITD1 may function through downstream effects on the activity of VPS4, which plays a critical role in the processing and remodeling of ESCRT filaments in abscission. The American Society for Cell Biology 2012-11-15 /pmc/articles/PMC3496609/ /pubmed/23015756 http://dx.doi.org/10.1091/mbc.E12-04-0292 Text en © 2012 Lee 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 BD; are registered trademarks of The American Society of Cell Biology.
spellingShingle Articles
Lee, Seongju
Chang, Jaerak
Renvoisé, Benoît
Tipirneni, Anita
Yang, Sarah
Blackstone, Craig
MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title_full MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title_fullStr MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title_full_unstemmed MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title_short MITD1 is recruited to midbodies by ESCRT-III and participates in cytokinesis
title_sort mitd1 is recruited to midbodies by escrt-iii and participates in cytokinesis
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3496609/
https://www.ncbi.nlm.nih.gov/pubmed/23015756
http://dx.doi.org/10.1091/mbc.E12-04-0292
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