研究者業績

佐藤 成樹

サトウ ナルキ  (Naruki Sato)

基本情報

所属
千葉大学 大学院理学研究院 准教授
学位
博士(学術)(総合研究大学院大学)

J-GLOBAL ID
202001013492520307
researchmap会員ID
B000382197

論文

 32
  • Takahiro Nomura, Kimihide Hayakawa, Naruki Sato, Takashi Obinata
    Zoological science 39(4) 2022年8月  査読有り
    The effects of mechanical stress on cultured muscle cells were examined with particular interest in myofibril assembly by using a cell-stretching system. We observed that formation and maintenance of cross-striated myofibrils in chick muscle cell cultures was suppressed in the media containing higher concentration of KCl, tetrodotoxin, or ML-9 (an inhibitor of myosin light chain kinase), but periodic stretching of myotubes for several days enabled formation of striated myofibrils just as in standard muscle cultures. However, ryanodine (a blocker of the Ca2 + channel in sarcoplasmic reticulum) and BDM (an inhibitor of myosin-actin interaction) suppressed the stretch-induced myofibrillogenesis. We further found that stretching of myotubes causes quick and transient elevation of the intracellular Ca2 + concentration and this elevation is disturbed by inhibition of Ca2 + channels of sarcoplasmic reticulum and suppression of Ca2 + influx from culture medium. These observations indicate that periodic stretching induces elevation of intracellular Ca2 + concentration and that this elevation may be due to release of Ca2 + from sarcoplasmic reticulum and Ca2 + influx from outside of the cells. The increased Ca2 + may activate actin-myosin interaction by interacting with troponin that is located along actin filaments and/or inducing phosphorylation of myosin light chains and thereby promote myofibril assembly.
  • Mohri K, Suzuki-Toyota F, Obinata T, Sato N
    Zoological science 36(2) 112-119 2019年4月  査読有り
  • Seiji Y, Ito T, Nakamura Y, Nakaishi-Fukuchi Y, Matsuo A, Sato N, Nogawa H
    Human cell 32(2) 103-113 2019年4月  査読有り
  • Sa Rula, Takahiro Suwa, Saku T. Kijima, Takeshi Haraguchi, Shinryu Wakatsuki, Naruki Sato, Zhongrui Duan, Motoki Tominaga, Taro Q.P. Uyeda, Kohji Ito
    Biochemical and Biophysical Research Communications 495(3) 2145-2151 2018年1月15日  査読有り
    There are two classes of myosin, XI and VIII, in higher plants. Myosin XI moves actin filaments at high speed and its enzyme activity is also very high. In contrast, myosin VIII moves actin filaments very slowly with very low enzyme activity. Because most of these enzymatic and motile activities were measured using animal skeletal muscle α-actin, but not plant actin, they would not accurately reflect the actual activities in plant cells. We thus measured enzymatic and motile activities of the motor domains of two Arabidopsis myosin XI isoforms (MYA2, XI-B), and one Arabidopsis myosin VIII isoform (ATM1), by using three Arabidopsis actin isoforms (ACT1, ACT2, and ACT7). The measured activities were different from those measured by using muscle actin. Moreover, Arabidopsis myosins showed different enzymatic and motile activities when using different Arabidopsis actin isoforms. Our results suggest that plant actin should be used for measuring enzymatic and motile activities of plant myosins and that different actin isoforms in plant cells might function as different tracks along which affinities and velocities of each myosin isoform are modulated.
  • Sonobe H, Obinata T, Minokawa T, Haruta T, Kawamura Y, Wakatsuki S, Sato N
    Journal of biochemistry 160(6) 369-379 2016年  査読有り

MISC

 13

担当経験のある科目(授業)

 21

共同研究・競争的資金等の研究課題

 15

産業財産権

 1