Research theme for competitive and other funds (9):
2019 - 2022 分裂酵母収縮環のin vitro収縮系を用いたタンパク質の高分解能配向解析
2015 - 2019 Construction of cell model using cell extracts and motility and division of the model
2014 - 2019 Combined approach of In vitro and in vivo analysis for mechanisms of cytokinesis in fission yeast
2013 - 2015 分裂酵母ゴーストを用いた収縮環形成過程のin vitro再構成
2010 - 2015 Structure, formation, and contraction of the contractile ring
2014 - 2015 分裂酵母収縮環の単離・精製を通した収縮メカニズムの包括的理解
2011 - 2012 分裂酵母ゴースト細胞を用いた収縮環収縮のin vitro解析
2011 - 2012 分裂酵母からの収縮環単離と再活性化による収縮メカニズムの解明
2007 - 2008 減数分裂特異的エンドサイトーシスの発見とその分子メカニズムの解明
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Papers (14):
Shogo Yoshihara, Takao Nakata, Jun Kashiwazaki, Kazuhiro Aoyama, Issei Mabuchi. In Vitro Formation of Actin Ring in the Fission Yeast Cell Extracts. Cytoskeleton (Hoboken, N.J.). 2025
I. Mabuchi, J. Kashiwazaki, M. Mishra. In vitro reactivation of the cytokinetic contractile ring of fission yeast cells. CYTOKINESIS. 2017. 137. 387-394
Contraction of the Contractile Ring during Cytokinesis : Studies Using an in vitro System. 2014. 33. 6. 660-665
Mithilesh Mishra, Jun Kashiwazaki, Tomoko Takagi, Ramanujam Srinivasan, Yinyi Huang, Mohan K. Balasubramanian, Issei Mabuchi. In Vitro Contraction of Cytokinetic Ring Depends on Myosin II but not on Actin Dynamics. BIOPHYSICAL JOURNAL. 2014. 106. 2. 7A-7A
KASHIWAZAKI Jun. Optical sectioning microscopy : Spatiotemporal visualization of actin cytoskeleton in fission yeast. Seitai no Kagaku. 2013. 64. 6. 533-538