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Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation

Serine-threonine kinase 38 (STK38) is a member of the protein kinase A (PKA)/PKG/PKC-family implicated in the regulation of cell division and morphogenesis. However, the molecular mechanisms underlying STK38 stability remain largely unknown. Here, we show that treatment of cells with either heat or...

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Autores principales: Enomoto, Atsushi, Fukasawa, Takemichi, Tsumoto, Hiroki, Karube, Masataka, Nakagawa, Keiichi, Yoshizaki, Ayumi, Sato, Shinichi, Miura, Yuri, Miyagawa, Kiyoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831656/
https://www.ncbi.nlm.nih.gov/pubmed/31690749
http://dx.doi.org/10.1038/s41598-019-52435-8
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author Enomoto, Atsushi
Fukasawa, Takemichi
Tsumoto, Hiroki
Karube, Masataka
Nakagawa, Keiichi
Yoshizaki, Ayumi
Sato, Shinichi
Miura, Yuri
Miyagawa, Kiyoshi
author_facet Enomoto, Atsushi
Fukasawa, Takemichi
Tsumoto, Hiroki
Karube, Masataka
Nakagawa, Keiichi
Yoshizaki, Ayumi
Sato, Shinichi
Miura, Yuri
Miyagawa, Kiyoshi
author_sort Enomoto, Atsushi
collection PubMed
description Serine-threonine kinase 38 (STK38) is a member of the protein kinase A (PKA)/PKG/PKC-family implicated in the regulation of cell division and morphogenesis. However, the molecular mechanisms underlying STK38 stability remain largely unknown. Here, we show that treatment of cells with either heat or the calcium ionophore A23187 induced STK38 degradation. The calpain inhibitor calpeptin suppressed hyperthermia-induced degradation or the appearance of A23187-induced cleaved form of STK38. An in vitro cleavage assay was then used to demonstrate that calpain I directly cleaves STK38 at the proximal N-terminal region. Deletion of the N-terminal region of STK38 increased its stability against hyperthermia. We further demonstrated that the MAPKK kinase (MAP3K) MEKK2 prevented both heat- and calpain-induced cleavage of STK38. MEKK2 knockdown enhanced hyperthermia-induced degradation of STK38. We performed an in vitro MEKK2 assay and identified the key regulatory site in STK38 phosphorylated by MEKK2. Experiments with a phosphorylation-defective mutant demonstrated that phosphorylation of Ser 91 is important for STK38 stability, as the enzyme is susceptible to degradation by the calpain pathway unless this residue is phosphorylated. In summary, we demonstrated that STK38 is a calpain substrate and revealed a novel role of MEKK2 in the process of STK38 degradation by calpain.
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spelling pubmed-68316562019-11-13 Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation Enomoto, Atsushi Fukasawa, Takemichi Tsumoto, Hiroki Karube, Masataka Nakagawa, Keiichi Yoshizaki, Ayumi Sato, Shinichi Miura, Yuri Miyagawa, Kiyoshi Sci Rep Article Serine-threonine kinase 38 (STK38) is a member of the protein kinase A (PKA)/PKG/PKC-family implicated in the regulation of cell division and morphogenesis. However, the molecular mechanisms underlying STK38 stability remain largely unknown. Here, we show that treatment of cells with either heat or the calcium ionophore A23187 induced STK38 degradation. The calpain inhibitor calpeptin suppressed hyperthermia-induced degradation or the appearance of A23187-induced cleaved form of STK38. An in vitro cleavage assay was then used to demonstrate that calpain I directly cleaves STK38 at the proximal N-terminal region. Deletion of the N-terminal region of STK38 increased its stability against hyperthermia. We further demonstrated that the MAPKK kinase (MAP3K) MEKK2 prevented both heat- and calpain-induced cleavage of STK38. MEKK2 knockdown enhanced hyperthermia-induced degradation of STK38. We performed an in vitro MEKK2 assay and identified the key regulatory site in STK38 phosphorylated by MEKK2. Experiments with a phosphorylation-defective mutant demonstrated that phosphorylation of Ser 91 is important for STK38 stability, as the enzyme is susceptible to degradation by the calpain pathway unless this residue is phosphorylated. In summary, we demonstrated that STK38 is a calpain substrate and revealed a novel role of MEKK2 in the process of STK38 degradation by calpain. Nature Publishing Group UK 2019-11-05 /pmc/articles/PMC6831656/ /pubmed/31690749 http://dx.doi.org/10.1038/s41598-019-52435-8 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Enomoto, Atsushi
Fukasawa, Takemichi
Tsumoto, Hiroki
Karube, Masataka
Nakagawa, Keiichi
Yoshizaki, Ayumi
Sato, Shinichi
Miura, Yuri
Miyagawa, Kiyoshi
Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title_full Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title_fullStr Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title_full_unstemmed Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title_short Prevention of calpain-dependent degradation of STK38 by MEKK2-mediated phosphorylation
title_sort prevention of calpain-dependent degradation of stk38 by mekk2-mediated phosphorylation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6831656/
https://www.ncbi.nlm.nih.gov/pubmed/31690749
http://dx.doi.org/10.1038/s41598-019-52435-8
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