Rchr
J-GLOBAL ID:201101009920643403
Update date: Aug. 30, 2024 Shiozaki Kazuhiro
シオザキ カズヒロ | Shiozaki Kazuhiro
Lectures and oral presentations (19)
-
Identification of the interaction interface between TOR complex 2 and its substrate by in-vitro and in-vivo crosslinking
(10th International Fission Yeast Meeting 2019) -
「スーパーモデル」としての酵母が拓く疾患の遺伝子研究
(公開市民講座「遺伝学のパワーで拓く新時代」 2018) -
分裂酵母TORC1のMip1/Raptorサブユニットを介した基質認識機構
(第8回TOR研究会 2018) -
TOR複合体2の必須制御サブユニットSin1がもつCRIMドメインの多重機能
(生命科学系学会合同年次大会 ConBio2017 2017) -
Fission yeast as a genetic model to dissect Target of Rapamycin (TOR) signaling
(2nd International Conference on Molecular Biology and Biotechnology 2017) -
Interaction between the Spc1/Sty1 stress-activated protein kinase and TOR complex 2
(The 9th International Fission Yeast Meeting 2017) -
がん増殖関わる酵素 活性化の仕組み解明
(朝日新聞 2017) -
新しい抗がん剤期待
(奈良新聞 2017) -
Genetic dissection of Target Of Rapamycin (TOR) signaling conserved from yeast to humans: Substrate recognition by TOR complex 2
(8th Annual National Convention 2016) -
Genetic dissection of Target Of Rapamycin (TOR) signaling conserved from yeast to humans: Regulation of TOR complex 1
(1st International and 7th Annual Convention and Scientific Meeting 2016) -
Target of Rapamycin (TOR) signaling from and to vacuoles/lysosomes
(Protein Trafficking and Intracellular Signaling of Plant and Fungal Cells 2016) -
Regulation and function of the two Target of Rapamycin (TOR) complexes
(2015) -
Negative Regulation of TOR complex 1 by heterodimeric Gtr1-Gtr2 GTPases
(The 8th International Fission Yeast Meeting 2015) -
Genetic dissection of Target Of Rapamycin (TOR) signaling in cellular growth response to nutrients
(4th Workshop 2015) -
Mechanisms that determine the substrate specificity of TOR kinase
(Cell Biology of Yeasts 2013) -
酵母から学ぶヒト細胞のしくみと病気
(関西文化学術研究都市6大学連携 市民公開講座2013 2013) -
インスリンシグナル経路に相同な分裂酵母グルコース応答経路
(第76回 講演会 2013) -
Osmostress signaling by the Wis4-Win1 MAPKKK heteromer stabilized by the Mcs4 response regulator
(The 7th International Fission Yeast Meeting 2013) -
環境ストレスを感知するMAPキナーゼの機能と制御
(第26回夏の学校 2013)
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