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Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing

The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based structures that influence cell division, motility, morphogenesis and signaling. Katanin is composed of a catalytic p60 subunit (A subunit, KATNA1) and a regulatory p80 subunit (B subunit, KATNB1). The mam...

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Autores principales: Cheung, Keith, Senese, Silvia, Kuang, Jiaen, Bui, Ngoc, Ongpipattanakul, Chayanid, Gholkar, Ankur, Cohn, Whitaker, Capri, Joseph, Whitelegge, Julian P., Torres, Jorge Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858946/
https://www.ncbi.nlm.nih.gov/pubmed/26929214
http://dx.doi.org/10.1074/mcp.M115.056465
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author Cheung, Keith
Senese, Silvia
Kuang, Jiaen
Bui, Ngoc
Ongpipattanakul, Chayanid
Gholkar, Ankur
Cohn, Whitaker
Capri, Joseph
Whitelegge, Julian P.
Torres, Jorge Z.
author_facet Cheung, Keith
Senese, Silvia
Kuang, Jiaen
Bui, Ngoc
Ongpipattanakul, Chayanid
Gholkar, Ankur
Cohn, Whitaker
Capri, Joseph
Whitelegge, Julian P.
Torres, Jorge Z.
author_sort Cheung, Keith
collection PubMed
description The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based structures that influence cell division, motility, morphogenesis and signaling. Katanin is composed of a catalytic p60 subunit (A subunit, KATNA1) and a regulatory p80 subunit (B subunit, KATNB1). The mammalian genome also encodes two additional A-like subunits (KATNAL1 and KATNAL2) and one additional B-like subunit (KATNBL1) that have remained poorly characterized. To better understand the factors and mechanisms controlling mammalian microtubule-severing, we have taken a mass proteomic approach to define the protein interaction module for each mammalian Katanin subunit and to generate the mammalian Katanin family interaction network (Katan-ome). Further, we have analyzed the function of the KATNBL1 subunit and determined that it associates with KATNA1 and KATNAL1, it localizes to the spindle poles only during mitosis and it regulates Katanin A subunit microtubule-severing activity in vitro. Interestingly, during interphase, KATNBL1 is sequestered in the nucleus through an N-terminal nuclear localization signal. Finally KATNB1 was able to compete the interaction of KATNBL1 with KATNA1 and KATNAL1. These data indicate that KATNBL1 functions as a regulator of Katanin A subunit microtubule-severing activity during mitosis and that it likely coordinates with KATNB1 to perform this function.
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spelling pubmed-48589462017-05-01 Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing Cheung, Keith Senese, Silvia Kuang, Jiaen Bui, Ngoc Ongpipattanakul, Chayanid Gholkar, Ankur Cohn, Whitaker Capri, Joseph Whitelegge, Julian P. Torres, Jorge Z. Mol Cell Proteomics Research The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based structures that influence cell division, motility, morphogenesis and signaling. Katanin is composed of a catalytic p60 subunit (A subunit, KATNA1) and a regulatory p80 subunit (B subunit, KATNB1). The mammalian genome also encodes two additional A-like subunits (KATNAL1 and KATNAL2) and one additional B-like subunit (KATNBL1) that have remained poorly characterized. To better understand the factors and mechanisms controlling mammalian microtubule-severing, we have taken a mass proteomic approach to define the protein interaction module for each mammalian Katanin subunit and to generate the mammalian Katanin family interaction network (Katan-ome). Further, we have analyzed the function of the KATNBL1 subunit and determined that it associates with KATNA1 and KATNAL1, it localizes to the spindle poles only during mitosis and it regulates Katanin A subunit microtubule-severing activity in vitro. Interestingly, during interphase, KATNBL1 is sequestered in the nucleus through an N-terminal nuclear localization signal. Finally KATNB1 was able to compete the interaction of KATNBL1 with KATNA1 and KATNAL1. These data indicate that KATNBL1 functions as a regulator of Katanin A subunit microtubule-severing activity during mitosis and that it likely coordinates with KATNB1 to perform this function. The American Society for Biochemistry and Molecular Biology 2016-05 2016-02-29 /pmc/articles/PMC4858946/ /pubmed/26929214 http://dx.doi.org/10.1074/mcp.M115.056465 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Research
Cheung, Keith
Senese, Silvia
Kuang, Jiaen
Bui, Ngoc
Ongpipattanakul, Chayanid
Gholkar, Ankur
Cohn, Whitaker
Capri, Joseph
Whitelegge, Julian P.
Torres, Jorge Z.
Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title_full Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title_fullStr Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title_full_unstemmed Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title_short Proteomic Analysis of the Mammalian Katanin Family of Microtubule-severing Enzymes Defines Katanin p80 subunit B-like 1 (KATNBL1) as a Regulator of Mammalian Katanin Microtubule-severing
title_sort proteomic analysis of the mammalian katanin family of microtubule-severing enzymes defines katanin p80 subunit b-like 1 (katnbl1) as a regulator of mammalian katanin microtubule-severing
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4858946/
https://www.ncbi.nlm.nih.gov/pubmed/26929214
http://dx.doi.org/10.1074/mcp.M115.056465
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