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首页> 外文期刊>Molecular biology of the cell >Citron kinase, a Rho-dependent kinase, induces di-phosphorylation of regulatory light chain of myosin II
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Citron kinase, a Rho-dependent kinase, induces di-phosphorylation of regulatory light chain of myosin II

机译:柠檬酸激酶,一种Rho依赖性激酶,诱导肌球蛋白II调节轻链的二磷酸化

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摘要

Citron kinase is a Rho-effector protein kinase that is related to Rho-associated kinases of ROCK/ROK/Rho-kinase family. Both ROCK and citron kinase are suggested to play a role in cytokinesis. However, no substrates are known for citron kinase. We found that citron kinase phosphorylated regulatory light chain (MLC) of myosin II at both Ser-19 and Thr-18 in vitro. Unlike ROCK, however, citron kinase did not phosphorylate the myosin binding subunit of myosin phosphatase, indicating that it does not inhibit myosin phosphatase. We found that the expression of the kinase domain of citron kinase resulted in an increase in MLC di-phosphorylation. Furthermore, the kinase domain was able to increase di-phosphorylation and restore stress fiber assembly even when ROCK was inhibited with a specific inhibitor, Y-27632. The expression of full-length citron kinase also increased di-phosphorylation during cytokinesis. These observations suggest that citron kinase phosphorylates MLC to generate di-phosphorylated MLC in vivo. Although both mono- and di-phosphorylated MLC were found in cleavage furrows, di-phosphorylated MLC showed more constrained localization than did mono-phosphorylated MLC. Because citron kinase is localized in cleavage furrows, citron kinase may be involved in regulating di-phosphorylation of MLC during cytokinesis. [References: 47]
机译:柚子激酶是Rho效应蛋白激酶,与ROCK / ROK / Rho激酶家族的Rho相关激酶有关。 ROCK和柚子激酶均在胞质分裂中起作用。但是,尚无柚子激酶的底物是已知的。我们发现在体外Ser-19和Thr-18的肌球蛋白II的柚子激酶磷酸化调节轻链(MLC)。然而,与ROCK不同,柚子激酶不使肌球蛋白磷酸酶的肌球蛋白结合亚基磷酸化,表明它不抑制肌球蛋白磷酸酶。我们发现,柚子激酶的激酶结构域的表达导致MLC双磷酸化的增加。此外,即使ROCK被特定的抑制剂Y-27632抑制,该激酶域也能够增加二磷酸化并恢复应激纤维的装配。全长柚子激酶的表达还增加了胞质分裂过程中的双磷酸化。这些观察结果表明,柚子激酶使MLC磷酸化以在体内产生二磷酸化的MLC。尽管在切割沟中发现了单磷酸化和双磷酸化的MLC,但双磷酸化的MLC比单磷酸化的MLC显示出更多的约束定位。由于柚子激酶位于卵裂沟中,因此柚子激酶可能参与细胞分裂过程中MLC的二磷酸化。 [参考:47]

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