ID | 67494 |
フルテキストURL | |
著者 |
Namba, Shotaro
Graduate School of Environmental, Life, Natural Science and Technology, Okayama University
Moriya, Hisao
Faculty of Graduate School of Environmental, Life, Natural Science and Technology, Okayama University
ORCID
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publons
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抄録 | Although protein aggregation can cause cytotoxicity, such aggregates can also form to mitigate cytotoxicity from misfolded proteins, although the nature of these contrasting aggregates remains unclear. We previously found that overproduction (op) of a three green fluorescent protein-linked protein (3×GFP) induces giant aggregates and is detrimental to growth. Here, we investigated the mechanism of growth inhibition by 3×GFP-op using non-aggregative 3×MOX-op as a control in Saccharomyces cerevisiae. The 3×GFP aggregates were induced by misfolding, and 3×GFP-op had higher cytotoxicity than 3×MOX-op because it perturbed the ubiquitin-proteasome system. Static aggregates formed by 3×GFP-op dynamically trapped Hsp70 family proteins (Ssa1 and Ssa2 in yeast), causing the heat-shock response. Systematic analysis of mutants deficient in the protein quality control suggested that 3×GFP-op did not cause a critical Hsp70 depletion and aggregation functioned in the direction of mitigating toxicity. Artificial trapping of essential cell cycle regulators into 3×GFP aggregates caused abnormalities in the cell cycle. In conclusion, the formation of the giant 3×GFP aggregates itself is not cytotoxic, as it does not entrap and deplete essential proteins. Rather, it is productive, inducing the heat-shock response while preventing an overload to the degradation system.
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キーワード | Aggregation
Fluorescent protein
Hsp70
Overproduction
Toxicity
Yeast
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発行日 | 2024-06-12
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出版物タイトル |
Journal of Cell Science
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巻 | 137巻
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号 | 11号
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出版者 | The Company of Biologists Ltd
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開始ページ | jcs261977
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ISSN | 0021-9533
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NCID | AA00694823
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資料タイプ |
学術雑誌論文
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言語 |
英語
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OAI-PMH Set |
岡山大学
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著作権者 | © 2024. Published by The Company of Biologists Ltd
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論文のバージョン | publisher
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PubMed ID | |
DOI | |
Web of Science KeyUT | |
関連URL | isVersionOf https://doi.org/10.1242/jcs.261977
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ライセンス | https://creativecommons.org/licenses/by/4.0
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Citation | Shotaro Namba, Hisao Moriya; Toxicity of the model protein 3×GFP arises from degradation overload, not from aggregate formation. J Cell Sci 1 June 2024; 137 (11): jcs261977. doi: https://doi.org/10.1242/jcs.261977
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助成機関名 |
Japan Society for the Promotion of Science
Okayama University
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助成番号 | 23KJ1610
20H03242
22K19294
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