[1]. The Greatwall kinase Rim15 promotes microautophagy and microlipophagy under the control of TORC1 Biochem Biophys Res Commun. 752/ 151468- (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Yuka Takahashi, Trien Tu San, Md Imran Nur Manik, Shamsul Morshed, and Takashi Ushimaru [Notes] 研究の立案、まとめ、論文執筆 [DOI] [2]. ESCRT elicits vacuolar fission in the absence of Vps4 in budding yeast Biochem Biophys Res Commun. 746/ 151244- (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Most Naoshia Tasnin, Tsuneyuki Takuma, Yuka Takahashi, and Takashi Ushimaru [Notes] 研究の立案、まとめ、論文執筆 [DOI] [3]. ESCRT mediates micronucleophagy and macronucleophagy in yeast Biochem Biophys Res Commun. 742/ 151102- (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Most Naoshia Tasnin, Yuka Takahashi, Tsuneyuki Takuma, and Takashi Ushimaru [Notes] 研究の立案、まとめ、論文執筆 [DOI] [4]. Nuclear ESCRT is involved in intranuclear protein quality control by micronucleophagy Biochem Biophys Res Commun. 744/ 151219- (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Most Naoshia Tasnin, Yuka Takahashi, Tsuneyuki Takuma, and Takashi Ushimaru [Notes] 研究の立案、まとめ、論文執筆 [DOI] [5]. The yeast VAPs Scs2 and Scs22 are required for NVJ integrity and micronucleophagy Biochem Biophys Res Commun. 734/ 150628- (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Md Imran Nur Manik, Most Naoshia Tasnin, Tsuneyuki Takuma, and Takashi Ushimaru [Notes] 研究の立案、まとめ、論文執筆 [DOI]
|
[1]. (2016) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]丑丸 敬史 [Notes] 分担箇所「細胞老化に対するナノバイオからのアプローチ」(pp88-105) [2]. (2016) [Book type]book(research) [Sole author, co-author, or author and editor] joint work [Author]丑丸 敬史 [Notes] 分担テーマ「老いを科学する」(pp31-54) [3]. (2013) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]丑丸 敬史,泰中啓一 [Notes] 分担(pp10-185) [4]. Salt stress and transgenic plants overexpressing dehydroascorbate reductase. Studium Press (India) Pvt. Ltd., New Delhi. (2011) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]Takashi Ushimaru,Katsumi Amako |
[1]. ミクロヌクレオファジーと核小体リモデリングの制御機構 第15 回 オートファジー研究会 (2023/11/28) other [Presenter]◯丑丸敬史、Most Naoshia Tasnin、宅間恒行、Md Imran Nur Manik [Notes] 2023.11.27-30, 越後湯沢 NASPAニューオオタニ [2]. Osh1 is involved in micronucleophagy and nucleolar remodeling 酵母遺伝学フォーラム第56回研究報告会 (2023/8/30) other [Presenter]◯Md Imran Nur Manik, Takashi Ushimaru [Notes] 2023.8.30-9.1,新潟大学 [3]. 変性タンパク質集積におけるTORC1とPP2Aの役割 酵母遺伝学フォーラム第56回研究報告会 (2023/8/30) other [Presenter]◯丑丸敬史、東寛人、髙橋佑嘉 [Notes] 2023.8.30-9.1,新潟大学 [4]. ミクロヌクレオファジーにおける脂質輸送タンパク質Vps13の役割の解析 酵母遺伝学フォーラム第56回研究報告会 (2023/8/30) other [Presenter]◯宅間恒行、丑丸敬史 [Notes] 2023.8.30-9.1,新潟大学 [5]. タンパク質毒性ストレス下におけるTORC1局在変化の分子機構の解析 酵母遺伝学フォーラム第56回研究報告会 (2023/8/30) other [Presenter]◯髙橋佑嘉、大矢天音、秋月亮磨、丑丸敬史 [Notes] 2023.8.30-9.1,新潟大学
|
[1]. joint (with other institution) 家康公ゆかりのクラフトビールに関する酵母の研究及び開発 member ( 2023/4 ~ 2024/3 ) [Partners] 静岡市大河ドラマ「どうする家康」活用推進協議会 [Notes] 有用野生酵母の単離分担 [2]. joint (with other institution) 南アルプスユネスコエコパーク高山植物由来酵母活用 共同研究 member ( 2023/4 ~ 2024/3 ) [Partners] 静岡市環境局 [Notes] 有用野生酵母の単離分担 [3]. joint (with other institution) 寿命因子TORC1が制御する姉妹染色分体接着の制御機構の解明 leader ( 2023/4 ~ 2024/3 ) [Partners] 東北大学加齢医学研究所 [4]. joint (with other institution) 家康公ゆかりのクラフトビールに関する公募の研究及び開発 member ( 2022/10 ~ 2023/3 ) [Partners] 静岡市大河ドラマ「どうする家康」活用推進協議会 [Notes] 有用野生酵母の単離分担 [5]. joint (with other institution) 南アルプスユネスコエコパーク高山植物由来酵母の活用可能性調査業務 member ( 2022/7 ~ 2022/8 ) [Partners] 静岡市環境局 [Notes] 有用野生酵母の単離分担
|
[1]. 細胞内はいつも清潔に!:オートファジーによる細胞内のお掃除と病気との関係 ( 2023/4 ~ 2024/3 ) Grant-in-Aid for Publication of Scientific Research Results leader [Notes] ひらめき☆ときめきサイエンス [2]. ミクロヌクレオファジーにおける液胞と核の協働機構の解析 ( 2022/4 ~ 2024/3 ) Grant-in-Aid for Scientific Research on Innovative Areas (B) leader [3]. 細胞内のお掃除屋:オートファジーと病気 ( 2022/4 ~ 2023/3 ) Grant-in-Aid for Publication of Scientific Research Results leader [Notes] ひらめき☆ときめきサイエンス [4]. 液胞が制御する核内染色体・核小体の再配置と核分解オートファジーとの連動機構の解明 ( 2021/4 ~ 2024/3 ) Grant-in-Aid for Scientific Research (B) leader [5]. 細胞内浄化システム オートファジーと病気との関連 ( 2021/4 ~ 2022/3 ) Grant-in-Aid for Publication of Scientific Research Results leader [Notes] ひらめき☆ときめきサイエンス
|
[1]. 寿命因子TORC1が制御する姉妹染色分体接着の制御機構の解明(課題番号4) (2023/4 - 2024/3 ) [Offer orgnization] 東北大学加齢医学研究所 [System name] 共同研究資金 [Role] principal investigator [URL] [2]. 寿命因子TORC1が制御する姉妹染色分体接着の制御機構の解明(課題番号4) (2022/4 - 2023/3 ) [Offer orgnization] 東北大学加齢医学研究所 [System name] 共同研究資金 [Role] principal investigator [URL] [3]. 分裂期進行を制御する寿命制御因子mTORの解析(課題番号1) (2021/4 - 2022/3 ) [Offer orgnization] 東北大学加齢医学研究所 [System name] 共同研究資金 [Role] principal investigator [URL] [4]. 液胞による染色体・核小体の核内配置制御の解析 (2020/4 - 2022/3 ) [Offer orgnization] 公益財団法人発行研究所 [System name] 一般研究助成「研究課題2」 [Role] principal investigator [URL] [5]. 分裂期信仰を制御する寿命制御因子mTORの解析(課題番号95) (2020/4 - 2021/3 ) [Offer orgnization] 東北大学加齢医学研究所 [System name] 共同研究資金 [Role] principal investigator [URL] [Notes] 継続課題
|
[1]. (2008/4) [Notes] (分担)
|
[1]. 分子生物学会 フォーラム (2020/12) [Role at conference, etc.] is leader [Site of conference, etc.] zoom [Notes] フォーラム「拡大するTOR世界の新展開」(1F-06)オーガナイザー(2020年12月2日Zoom開催) [2]. 酵母遺伝学フォーラム学会 (2019/9) [Role at conference, etc.] is leader [Site of conference, etc.] 静岡市清水区(清水マリナート) [Notes] 主催(世話人)240名出席 (2019/9/4-6) 世話人、他2名。 [3]. TOR研究会 (2012/3) [Role at conference, etc.] is leader [Site of conference, etc.] 静岡大学 [Notes] 国内のTOR研究者の非公開の研究会。
|