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https://doi.org/10.24546/81009118
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2026-08-11
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81009118 (fulltext)
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81009118
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open access
出版タイプ
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タイトル
Characterization of Tamoxifen as an Antifungal Agent Using the Yeast Schizosaccharomyces Pombe Model Organism
著者
Zhang, Xibo ; Fang, Yue ; Jaiseng, Wurentuya ; Hu, Lingling ; Lu, Yabin ; Ma, Yan ; Furuyashiki, Tomoyuki
著者名
Zhang, Xibo
著者名
Fang, Yue
著者名
Jaiseng, Wurentuya
著者名
Hu, Lingling
著者名
Lu, Yabin
著者ID
A0696
研究者ID
1000010403221
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=6decd3361667b831520e17560c007669
著者名
Ma, Yan
馬, 岩
マ, ヤン
所属機関名
経営学研究科
著者ID
A0397
研究者ID
1000020362478
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=09b861d3853e7df7520e17560c007669
著者名
Furuyashiki, Tomoyuki
古屋敷, 智之
フルヤシキ, トモユキ
所属機関名
医学研究科
言語
English (英語)
収録物名
The Kobe journal of the medical sciences
巻(号)
61(2)
ページ
54-63
出版者
神戸大学医学部
Kobe University School of Medicine
刊行日
2015
公開日
2015-10-13
抄録
Tamoxifen, a selective estrogen receptor modulator used for managing breast cancer, is known to have antifungal activity. However, its molecular mechanism remains unknown. Using the fission yeast Schizosaccharomyces pombe as a model organism, we have explored the mechanism involved in antifungal action of tamoxifen. Since tamoxifen was shown to inhibit the binding of calmodulin to calcineurin in fungi, we first examined involvement of these molecules and found that overexpression of a catalytic subunit of calcineurin and its constitutively active mutant as well as calmodulin increases tamoxifen sensitivity. Since terbinafine and azoles inhibit enzymes for ergosterol biosynthesis, Erg1 and Erg11, for their antifungal actions, we also examined involvement of these molecules. Overexpression of Erg1 and Erg11 reduced the sensitivity to terbinafine and azoles, respectively, but increased tamoxifen sensitivity, suggesting that ergosterol biosynthesis is differently related to the action of tamoxifen and those of terbinafine and azoles. To elucidate molecules involved in tamoxifen action, we performed a genome-wide screen for altered sensitivity to tamoxifen using a fission yeast gene deletion library, and identified various hypersensitive and resistant mutants to this drug. Notably, these mutants are rarely overlapped with those identified in similar genetic screens with currently used antifungals, suggesting a novel mode of antifungal action. Furthermore, tamoxifen augmented antifungal actions of terbinafine and azoles, suggesting synergetic actions between these drugs. Therefore, our findings suggest that calmodulin-calcineurin pathway and ergosterol biosynthesis are related to antifungal action of tamoxifen, and propose novel targets for antifungal development as well as combined therapy with tamoxifen for fungal diseases.
カテゴリ
医学研究科
経営学研究科
The Kobe journal of the medical sciences
>
61巻
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61巻2号(2015)
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http://www.med.kobe-u.ac.jp/journal/contents.html
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資源タイプ
departmental bulletin paper
ISSN
0023-2513
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NCID
AA00711740
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