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  1. 原著論文

Over-Reduced State of Mitochondria as a Trigger of "β-Oxidation Shuttle" in Cancer Cells.

https://repo.qst.go.jp/records/2000370
https://repo.qst.go.jp/records/2000370
8e3ca4ac-c57f-4f00-969f-40edc4dda87d
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2024-01-25
タイトル
タイトル Over-Reduced State of Mitochondria as a Trigger of "β-Oxidation Shuttle" in Cancer Cells.
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Zhivko Zhelev

× Zhivko Zhelev

Zhivko Zhelev

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Akira Sumiyoshi

× Akira Sumiyoshi

Akira Sumiyoshi

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Ichio Aoki

× Ichio Aoki

Ichio Aoki

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Dessislava Lazarova

× Dessislava Lazarova

Dessislava Lazarova

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Tatyana Vlaykova

× Tatyana Vlaykova

Tatyana Vlaykova

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Tatsuya Higashi

× Tatsuya Higashi

Tatsuya Higashi

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Rumiana Bakalova

× Rumiana Bakalova

Rumiana Bakalova

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抄録
内容記述タイプ Abstract
内容記述 A considerable amount of data have accumulated in the last decade on the pronounced mitochondrial fatty acid oxidation (mFAO) in many types of cancer cells. As a result, mFAO was found to coexist with abnormally activated fatty acid synthesis (FAS) and the mevalonate pathway. Recent studies have demonstrated that overactivated mitochondrial β-oxidation may aggravate the impaired mitochondrial redox state and vice versa. Furthermore, the impaired redox state of cancerous mitochondria can ensure the continuous operation of β-oxidation by disconnecting it from the Krebs cycle and connecting it to the citrate-malate shuttle. This could create a new metabolic state/pathway in cancer cells, which we have called the "β-oxidation-citrate-malate shuttle", or "β-oxidation shuttle" for short, which forces them to proliferate. The calculation of the phosphate/oxygen ratio indicates that it is inefficient as an energy source and must consume significantly more oxygen per mole of ATP produced when combined with acetyl-CoA consuming pathways, such as the FAS and mevalonate pathways. The "β-oxidation shuttle" is an unconventional mFAO, a separate metabolic pathway that has not yet been explored as a source of energy, as well as a source of cataplerosis, leading to biomass accumulation, accelerated oxygen consumption, and, ultimately, a source of proliferation. The role of the "β-oxidation shuttle" and its contribution to redox-altered cancer metabolism provides a new direction for the development of future anticancer strategies. This may represent the metabolic "secret" of cancer underlying hypoxia and genomic instability.
書誌情報 Cancers

巻 14, 号 4, p. 871, 発行日 2022-02
出版者
出版者 MDPI
ISSN
収録物識別子タイプ ISSN
収録物識別子 2072-6694
PubMed番号
識別子タイプ PMID
関連識別子 35205619
DOI
識別子タイプ DOI
関連識別子 10.3390/cancers14040871
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