[1]. Prevention of liposome cryoaggregation by a radish (Raphanus sativus L.) vacuolar calcium-binding protein (RVCaB). Food Bioscience in press/ - (2023) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Yuki Kimura, Honami Osuda, Masakazu Hara [2]. Freeze-thaw-induced aggregation of bovine gamma globulin was efficiently inhibited by an intrinsically disordered plant protein dehydrin Food Hydrocolloids for Health in press/ - (2023) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Honami Osuda, Yuki Kimura, Masakazu Hara [3]. Inhibition of cryoaggregation of phospholipid liposomes by an Arabidopsis intrinsically disordered dehydrin and its K-segment Colloids and Surfaces B: Biointerfaces 211/ 112286- (2022) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Yuki Kimura, Tomohiro Ohkubo, Kosuke Shimizu, Yasuhiro Magata, Enoch Y. Park, Masakazu Hara [DOI] [4]. An intrinsically disordered radish vacuolar calcium-binding protein (RVCaB) showed cryoprotective activity for lactate dehydrogenase with its hydrophobic region. International Journal of Biological Macromolecules 182/ 1130-1137 (2021) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Honami Osuda, Yui Sunano, Masakazu Hara [5]. Cryoprotective activity of Arabidopsis KS-type dehydrin depends on the hydrophobic amino acids of two active segments. Archives of Biochemistry and Biophysics 691/ 108510- (2020) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Tomoka Yokoyama, Tomohiro Ohkubo, Keita Kamiya, Masakazu Hara [DOI]
|
[1]. (2022) [Book type]book(research) [Sole author, co-author, or author and editor] contributor [Author]原 正和 [REP page number] 119-130 [2]. (2021) [Book type]book(research) [Sole author, co-author, or author and editor] joint work [Author]原 正和 [REP page number] 229-233 [Notes] 同出版社の農業技術大系土壌施肥編追録第32号に記載された内容を特集号(単行本)として再出版されたものである。 [3]. (2021) [Book type]book(research) [Sole author, co-author, or author and editor] joint work [Author]原 正和 [REP page number] 2-6 [4]. Green Science and Technology CRC Press (2019) [Book type]book(research) [Sole author, co-author, or author and editor] joint work [Author]Enoch Y. Park, Takayuki Saito, Hirokazu Kawagishi, Masakazu Hara [Range] Chapter 11 Heat Tolerance Enhancers of Plants for Agricultural Use [Total page number] 344 [REP page number] 158-174 [5]. (2016) [Book type]book(educational) [Sole author, co-author, or author and editor] joint work [Author]原 正和 [Notes] 第1章 植物が作るひらひらしたタンパク質 p.12-28
|
[1]. デハイドリンKセグメント配列による乳酸脱水素酵素凍結保護活性メカニズム 第39回日本植物バイオテクノロジー 学会(堺)大会 (2022/9/13) other [Presenter]大須田穂波、吉原有紗、原正和 [2]. シロイヌナズナデハイドリンによるリポソーム凍結保護作用に関する研究 第39回日本植物バイオテクノロジー 学会(堺)大会 (2022/9/13) other [Presenter]木村友紀、清水広介、間賀田泰寛、朴龍洙、原正和 [3]. デハイドリンTypK配列によるLDH凍結保護メカニズムに関する研究 日本農芸化学会2022年度大会[京都] (2022/3/16) other [Presenter]大須田 穂波、吉原 有紗、原 正和 [4]. ダイコン液胞カルシウム結合タンパク質によるリポソームの凍結凝集抑制に関する研究 日本農芸化学会2022年度大会[京都] (2022/3/16) other [Presenter]木村 友紀、大須田 穂波、原 正和 [5]. デハイドリンおよび保存配列のリポソーム凍結凝集抑制に関する研究 第38回日本植物バイオテクノロジー(つくば)学会 (2021/9/10) other [Presenter]木村 友紀、大久保 智博、清水 広介、間賀田 泰寛、朴 龍洙、原 正和
|
[1]. 植物天然変性タンパク質の優れた超低温特性を利用した製剤凍結保存技術に関する研 究 ( 2022/8 ~ 2025/3 ) Grant-in-Aid for Challenging Exploratory Research leader [2]. 植物の超低温生存力を支える蛋白質の機能を利用した革新的保存技術に関する研究 ( 2019/8 ~ 2022/3 ) Challenging Research(Exploratory) leader [3]. 超低温保存が可能な種子における天然変性蛋白質の卓越した保護活性の分子機構 ( 2018/4 ) Grant-in-Aid for Scientific Research (B) leader [4]. 植物におけるアミロイド様蛋白質の金属生理学的役割の解明 ( 2012/4 ~ 2014/1 ) Grant-in-Aid for Challenging Exploratory Research leader [5]. 重金属環境下で有害化する植物アミロイド蛋白質の凝集及び毒性発現メカニズムの解明 ( 2011/4 ~ 2016/3 ) Grant-in-Aid for Scientific Research (B) leader
|
[1]. (2018/4 - 2019/3 ) [Offer orgnization] 公益財団法人市村清新技術財団 [System name] 植物研究助成金 [2]. (2017/7 ) [Offer orgnization] 一般財団法人東和食品研究振興会 [3]. (2016/4 - 2017/3 ) [Offer orgnization] 一般財団法人 杉山報公会 [4]. (2015/1 - 2016/3 ) [Offer orgnization] 一般財団法人杉山産業化学研究所 [System name] 研究助成 [5]. (2014/4 ) [Offer orgnization] 一般財団法人杉山産業化学研究所 [System name] 研究助成
|
[1]. (2005/8) [Notes] 授与・助成団体名(日本植物細胞分子生物学会)
|
[1]. 植物生長促進剤及び植物の生長促進方法 [Application Number] PCT/JP2013/076567 (2013/9/3) [Notes] 国際特許 [2]. 植物の環境ストレス耐性向上用組成物及び植物の環境ストレス耐性を向上させる方法 [Application Number] PCT/JP2013/ 60071 (2013/4/2) [Notes] 国際特許 [3]. 植物用環境ストレス耐性向上剤およびその製造方法 [Application Number] 特願2012-84596 (2012/4/3) [4]. 植物成長促進剤 [Application Number] 特願2012-012202 (2012/1/24) [5]. 植物耐熱性誘導剤 [Application Number] 特願2011-282111 (2011/12/22)
|
[1]. 静岡大学グリーン科学技術研究所第3回シンポジウム2016 (2016/11) [Role at conference, etc.] is leader
|
[1]. Frontiers in Plant Science, Topic Editor (2014/4 )
|