ID | 115898 |
Author |
Okumoto, Kanji
Kyushu University
Shermely, Mahmoud El
Kyushu University|Basilea Pharmaceutica International
Natsui, Masanao
Kyushu University
Kosako, Hidetaka
Tokushima University
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Natsuyama, Ryuichi
Kyushu University
Marutani, Toshihiro
Kyushu University
Fujiki, Yukio
Kyushu University|Institute of Rheological Functions of Food
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Content Type |
Journal Article
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Description | Most of peroxisomal matrix proteins including a hydrogen peroxide (H2O2)-decomposing enzyme, catalase, are imported in a peroxisome-targeting signal type-1 (PTS1)-dependent manner. However, little is known about regulation of the membrane-bound protein import machinery. Here, we report that Pex14, a central component of the protein translocation complex in peroxisomal membrane, is phosphorylated in response to oxidative stresses such as H2O2 in mammalian cells. The H2O2-induced phosphorylation of Pex14 at Ser232 suppresses peroxisomal import of catalase in vivo and selectively impairs in vitro the interaction of catalase with the Pex14-Pex5 complex. A phosphomimetic mutant Pex14-S232D elevates the level of cytosolic catalase, but not canonical PTS1-proteins, conferring higher cell resistance to H2O2. We thus suggest that the H2O2-induced phosphorylation of Pex14 spatiotemporally regulates peroxisomal import of catalase, functioning in counteracting action against oxidative stress by the increase of cytosolic catalase.
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Journal Title |
eLife
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ISSN | 2050084X
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Publisher | eLife Sciences Publications
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Volume | 9
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Start Page | e55896
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Published Date | 2020-08-24
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Rights | This article is distributed under the terms of the Creative Commons Attribution License(https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use and redistribution provided that the original author and source are credited.
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DOI (Published Version) | |
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language |
eng
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TextVersion |
Publisher
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departments |
Institute of Advanced Medical Sciences
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