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首页> 外文期刊>Cell motility and the cytoskeleton >In vivo phosphorylation of regulatory light chain of myosin II in sea urchin eggs and its role in controlling myosin localization and function during cytokinesis.
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In vivo phosphorylation of regulatory light chain of myosin II in sea urchin eggs and its role in controlling myosin localization and function during cytokinesis.

机译:海胆卵中肌球蛋白II的调节性轻链的体内磷酸化及其在胞质分裂过程中在控制肌球蛋白的定位和功能中的作用。

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摘要

Phosphorylation of myosin regulatory light chain (RLC) at Ser19 (mono-phosphorylation) promotes filament assembly and enhances actin-activated ATPase activity of non-muscle myosin, while phosphorylation at both Ser19 and Thr18 (di-phosphorylation) further enhances the ATPase activity. However, it has not well been addressed which type of phosphorylation is important in regulating myosin during cytokinesis. Here, we investigated subcellular localization in sea urchin eggs of mono-phosphorylated and di-phosphorylated RLC by both quantitative biochemical and spatiotemporal cytological approaches. Mono-phosphorylated RLC was dominant in the equatorial cortex throughout the whole process of cytokinesis. Inhibition of myosin light chain kinase (MLCK) decreased mono-phosphorylated RLC both in the cortex and in the cleavage furrow, and blocked both formation and contraction of the contractile ring. Two different types of ROCK inhibitor gave inconsistent results: H1152 blocked both RLC mono-phosphorylation in the cleavage furrow and contraction of the contractile ring, while Y27632 affected neither the mono-phosphorylation nor cell division. These results suggest that there may be other targets of H1152 than ROCK, which is involved in the RLC phosphorylation in the cleavage furrow. Furthermore, it was revealed that localization of myosin heavy chain in the cleavage furrow, but not in the cortex, was perturbed by inhibition of RLC mono-phosphorylation. These results suggested that RLC mono-phosphorylation by more than two RLC kinases play a main role in regulation and localization of myosin in the dividing sea urchin eggs. Cell Motil. Cytoskeleton 2007. (c) 2007 Wiley-Liss, Inc.
机译:Ser19处的肌球蛋白调节性轻链(RLC)的磷酸化(单磷酸化)促进了细丝装配并增强了非肌肉肌球蛋白的肌动蛋白激活的ATPase活性,而Ser19和Thr18处的磷酸化(二磷酸化)进一步增强了ATPase活性。但是,还没有解决在胞质分裂过程中哪种类型的磷酸化在调节肌球蛋白中很重要。在这里,我们通过定量生化和时空细胞学方法研究了单磷酸化和双磷酸化的RLC在海胆卵中的亚细胞定位。在整个胞质分裂的整个过程中,单磷酸化的RLC在赤道皮质中占主导地位。肌球蛋白轻链激酶(MLCK)的抑制作用降低了皮层和切割沟中的单磷酸化RLC,并阻断了收缩环的形成和收缩。两种不同类型的ROCK抑制剂的结果不一致:H1152既阻断了RLC的开沟和收缩环的收缩,又阻止了YLC32的单磷酸化和细胞分裂。这些结果表明,可能有H1152的其他目标,而不是ROCK,这与卵裂沟中的RLC磷酸化有关。此外,揭示了通过抑制RLC单磷酸化,扰动了肌球蛋白重链在切割沟中而不是在皮质中的定位。这些结果表明,由两个以上的RLC激酶进行的RLC单磷酸化在划分海胆卵中的肌球蛋白中的调节和定位中起主要作用。细胞动力。 Cytoskeleton2007。(c)2007 Wiley-Liss,Inc.。

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