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裂殖酵母肌球蛋白 Myo2 通过轻链磷酸化在肌动蛋白亲和力上下调。

Fission yeast myosin Myo2 is down-regulated in actin affinity by light chain phosphorylation.

机构信息

Department of Molecular Physiology & Biophysics, University of Vermont, Burlington, VT 05405.

Department of Molecular Physiology & Biophysics, University of Vermont, Burlington, VT 05405

出版信息

Proc Natl Acad Sci U S A. 2017 Aug 29;114(35):E7236-E7244. doi: 10.1073/pnas.1703161114. Epub 2017 Aug 14.

DOI:10.1073/pnas.1703161114
PMID:28808035
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5584420/
Abstract

Studies in fission yeast have provided the basis for the most advanced models of the dynamics of the cytokinetic contractile ring. Myo2, a class-II myosin, is the major source of tension in the contractile ring, but how Myo2 is anchored and regulated to produce force is poorly understood. To enable more detailed biochemical/biophysical studies, Myo2 was expressed in the baculovirus/9 insect cell system with its two native light chains, Rlc1 and Cdc4. Milligram yields of soluble, unphosphorylated Myo2 were obtained that exhibited high actin-activated ATPase activity and in vitro actin filament motility. The fission yeast specific chaperone Rng3 was thus not required for expression or activity. In contrast to nonmuscle myosins from animal cells that require phosphorylation of the regulatory light chain for activation, phosphorylation of Rlc1 markedly reduced the affinity of Myo2 for actin. Another unusual feature of Myo2 was that, unlike class-II myosins, which generally form bipolar filamentous structures, Myo2 showed no inclination to self-assemble at approximately physiological salt concentrations, as analyzed by sedimentation velocity ultracentrifugation. This lack of assembly supports the hypothesis that clusters of Myo2 depend on interactions at the cell cortex in structural units called nodes for force production during cytokinesis.

摘要

裂殖酵母的研究为细胞分裂收缩环动力学的最先进模型提供了基础。肌球蛋白 II(Myo2)是收缩环中张力的主要来源,但肌球蛋白 II 如何被锚定和调节以产生力的机制仍知之甚少。为了能够进行更详细的生化/生物物理研究,Myo2 及其两个天然轻链 Rlc1 和 Cdc4 在杆状病毒/9 昆虫细胞系统中表达。获得了毫克级产量的可溶性、未磷酸化的 Myo2,其表现出高的肌动蛋白激活 ATP 酶活性和体外肌动蛋白丝运动性。裂殖酵母特异性伴侣蛋白 Rng3 因此不是表达或活性所必需的。与需要磷酸化调节轻链才能激活的动物细胞中的非肌肉肌球蛋白不同,Rlc1 的磷酸化显著降低了 Myo2 与肌动蛋白的亲和力。Myo2 的另一个不寻常的特征是,与通常形成双极丝状结构的 II 类肌球蛋白不同,Myo2 在大约生理盐浓度下没有自我组装的倾向,如沉降速度超速离心分析所示。这种缺乏组装的情况支持了这样一种假设,即肌球蛋白 II 簇依赖于细胞皮层上的相互作用,在有丝分裂过程中,这些相互作用以称为节点的结构单元为单位产生力。

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本文引用的文献

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Molecular organization of cytokinesis nodes and contractile rings by super-resolution fluorescence microscopy of live fission yeast.通过活裂殖酵母的超分辨率荧光显微镜观察研究胞质分裂节点和收缩环的分子组织
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A single-headed fission yeast myosin V transports actin in a tropomyosin-dependent manner.单头裂殖酵母肌球蛋白V以原肌球蛋白依赖的方式转运肌动蛋白。
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Expansion and concatenation of non-muscle myosin IIA filaments drive cellular contractile system formation during interphase and mitosis.非肌肉肌球蛋白IIA细丝的扩展和连接驱动间期和有丝分裂期间细胞收缩系统的形成。
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The fission yeast cytokinetic contractile ring regulates septum shape and closure.裂殖酵母的细胞分裂收缩环调节隔膜的形状和闭合。
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Three myosins contribute uniquely to the assembly and constriction of the fission yeast cytokinetic contractile ring.三种肌球蛋白对裂殖酵母细胞分裂收缩环的组装和收缩具有独特作用。
Curr Biol. 2015 Aug 3;25(15):1955-65. doi: 10.1016/j.cub.2015.06.018. Epub 2015 Jul 2.
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An actin-myosin-II interaction is involved in maintaining the contractile ring in fission yeast.肌动蛋白-肌球蛋白-II相互作用参与维持裂殖酵母中的收缩环。
J Cell Sci. 2015 Aug 1;128(15):2903-18. doi: 10.1242/jcs.171264. Epub 2015 Jun 19.
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Myosin motor isoforms direct specification of actomyosin function by tropomyosins.肌球蛋白运动异构体通过原肌球蛋白直接决定肌动球蛋白的功能。
Cytoskeleton (Hoboken). 2015 Mar;72(3):131-45. doi: 10.1002/cm.21213. Epub 2015 Mar 26.
9
UCS proteins: chaperones for myosin and co-chaperones for Hsp90.UCS蛋白:肌球蛋白的伴侣蛋白以及热休克蛋白90的共伴侣蛋白。
Subcell Biochem. 2015;78:133-52. doi: 10.1007/978-3-319-11731-7_7.
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The value of mechanistic biophysical information for systems-level understanding of complex biological processes such as cytokinesis.机械生物物理信息对于系统层面理解诸如胞质分裂等复杂生物过程的价值。
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