Furukawa Tetsushi, Ogura Takehiko, Zheng Ya-Juan, Tsuchiya Hiroyuki, Nakaya Haruaki, Katayama Yoshifumi, Inagaki Nobuya
Department of Physiology, Akita University School of Medicine, Akita 010-8543, Japan.
J Physiol. 2002 May 1;540(Pt 3):883-93. doi: 10.1113/jphysiol.2001.016188.
Many dramatic alterations in various cellular processes during the cell cycle are known to involve ion channels. In ascidian embryos and Caenorhabditis elegans oocytes, for example, the activity of inwardly rectifying Cl(-) channels is enhanced during the M phase of the cell cycle, but the mechanism underlying this change remains to be established. We show here that the volume-sensitive Cl(-) channel, ClC-2 is regulated by the M-phase-specific cyclin-dependent kinase, p34(cdc2)/cyclin B. ClC-2 channels were phosphorylated by p34(cdc2)/cyclin B in both in vitro and cell-free phosphorylation assays. ClC-2 phosphorylation was inhibited by olomoucine and abolished by a (632)Ser-to-Ala (S632A) mutation in the C-terminus, indicating that (632)Ser is a target of phosphorylation by p34(cdc2)/cyclin B. Injection of activated p34(cdc2)/cyclin B attenuated the ClC-2 currents but not the S632A mutant channel currents expressed in Xenopus oocytes. ClC-2 currents attenuated by p34(cdc2)/cyclin B were increased by application of the cyclin-dependent kinase inhibitor, olomoucine (100 microM), an effect that was inhibited by calyculin A (5 nM) but not by okadaic acid (5 nM). A yeast two-hybrid system revealed a direct interaction between the ClC-2 C-terminus and protein phosphatase 1. These data suggest that the ClC-2 channel is also counter-regulated by protein phosphatase 1. In addition, p34(cdc2)/cyclin B decreased the magnitude of ClC-2 channel activation caused by cell swelling. As the activities of both p34(cdc2)/cyclin B and protein phosphatase 1 vary during the cell cycle, as does cell volume, the ClC-2 channel could be regulated physiologically by these factors.
已知细胞周期中各种细胞过程的许多显著变化都涉及离子通道。例如,在海鞘胚胎和秀丽隐杆线虫卵母细胞中,内向整流Cl(-)通道的活性在细胞周期的M期增强,但这种变化的潜在机制仍有待确定。我们在此表明,容积敏感性Cl(-)通道ClC-2受M期特异性细胞周期蛋白依赖性激酶p34(cdc2)/细胞周期蛋白B调控。在体外和无细胞磷酸化试验中,ClC-2通道都被p34(cdc2)/细胞周期蛋白B磷酸化。ClC-2的磷酸化被olomoucine抑制,并被C末端的(632)Ser到Ala(S632A)突变消除,表明(632)Ser是p34(cdc2)/细胞周期蛋白B磷酸化的靶点。注射活化的p34(cdc2)/细胞周期蛋白B可减弱非洲爪蟾卵母细胞中表达的ClC-2电流,但不影响S632A突变通道电流。应用细胞周期蛋白依赖性激酶抑制剂olomoucine(100 microM)可增加被p34(cdc2)/细胞周期蛋白B减弱的ClC-2电流,这种作用被calyculin A(5 nM)抑制,但不被冈田酸(5 nM)抑制。酵母双杂交系统揭示了ClC-2 C末端与蛋白磷酸酶1之间的直接相互作用。这些数据表明,ClC-2通道也受蛋白磷酸酶1的反向调节。此外,p34(cdc2)/细胞周期蛋白B降低了细胞肿胀引起的ClC-2通道激活幅度。由于p34(cdc2)/细胞周期蛋白B和蛋白磷酸酶1的活性在细胞周期中都会变化,细胞体积也是如此,因此ClC-2通道可能受这些因素的生理调节。