Goto H, Kosako H, Tanabe K, Yanagida M, Sakurai M, Amano M, Kaibuchi K, Inagaki M
Laboratory of Biochemistry, Aichi Cancer Center Research Institute, Chikusa-ku, Aichi 464, Japan.
J Biol Chem. 1998 May 8;273(19):11728-36. doi: 10.1074/jbc.273.19.11728.
We found that vimentin, the most widely expressed intermediate filament protein, served as an excellent substrate for Rho-associated kinase (Rho-kinase) and that vimentin phosphorylated by Rho-kinase lost its ability to form filaments in vitro. Two amino-terminal sites on vimentin, Ser38 and Ser71, were identified as the major phosphorylation sites for Rho-kinase, and Ser71 was the most favored and unique phosphorylation site for Rho-kinase in vitro. To analyze the vimentin phosphorylation by Rho-kinase in vivo, we prepared an antibody GK71 that specifically recognizes the phosphorylation of vimentin-Ser71. Ectopic expression of constitutively active Rho-kinase in COS-7 cells induced phosphorylation of vimentin at Ser71, followed by the reorganization of vimentin filament networks. During the cell cycle, the phosphorylation of vimentin-Ser71 occurred only at the cleavage furrow in late mitotic cells but not in interphase or early mitotic cells. This cleavage furrow-specific phosphorylation of vimentin-Ser71 was observed in the various types of cells we examined. All these accumulating observations increase the possibility that Rho-kinase may have a definite role in governing regulatory processes in assembly-disassembly and turnover of vimentin filaments at the cleavage furrow during cytokinesis.
我们发现波形蛋白,这种表达最为广泛的中间丝蛋白,是Rho相关激酶(Rho激酶)的优良底物,并且经Rho激酶磷酸化的波形蛋白在体外失去了形成丝的能力。波形蛋白上的两个氨基末端位点,即丝氨酸38和丝氨酸71,被确定为Rho激酶的主要磷酸化位点,并且丝氨酸71是体外Rho激酶最偏好且独特的磷酸化位点。为了分析Rho激酶在体内对波形蛋白的磷酸化作用,我们制备了一种特异性识别波形蛋白-丝氨酸71磷酸化的抗体GK71。在COS-7细胞中组成型活性Rho激酶的异位表达诱导了波形蛋白丝氨酸71位点的磷酸化,随后波形蛋白丝网络发生重组。在细胞周期中,波形蛋白-丝氨酸71的磷酸化仅发生在有丝分裂后期细胞的分裂沟处,而在间期或有丝分裂前期细胞中则不发生。在我们检测的各种类型细胞中均观察到了波形蛋白-丝氨酸71这种分裂沟特异性磷酸化。所有这些不断积累的观察结果增加了一种可能性,即Rho激酶在细胞分裂过程中,于分裂沟处波形蛋白丝的组装-拆卸和周转的调控过程中可能具有明确作用。