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Endogenous Species of Mammalian Nonmuscle Myosin IIA and IIB Include Activated Monomers and Heteropolymers

机译:哺乳动物非肌肉肌球蛋白IIA和IIB的内源物种包括活化的单体和杂聚物

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Background: Class II myosins generate contractile forces in cells by polymerizing into bipolar filaments and pulling on anchored actin filaments. Nonmuscle myosin II (NMII) plays central roles during cell adhesion, migration, cytokinesis, and tissue morphogenesis. NMII is present in virtually all mammalian cell types as tissue-specific combinations of NMIIA, NMIIB, and NMIIC isoforms. It remains poorly understood how the highly dynamic NMII-actin contractile system begins to assemble at new cellular locations during cell migration and how incorporation of different NMII isoforms into this system is coordinated. Results: Using platinum replica electron microscopy in combination with immunogold labeling, we demonstrate that individual activated (phosphorylated on the regulatory light chain and unfolded) NMIIA and NMIIB molecules represent a functional form of NMII in motile cells and that NMIIA and NMIIB copolymerize into nascent bipolar filaments during contractile system assembly. Using subdiffraction stimulated emission depletion microscopy together with a pharmacological block-and-release approach, we report that NMIIA and NMIIB simultaneously incorporate into the cytoskeleton during initiation of contractile system assembly, whereas the characteristic rearward shift of NMIIB relative to NMIIA is established later in the course of NMII turnover. Conclusions: We show existence of activated NMII monomers in cells, copolymerization of endogenous NMIIA and NMIIB molecules, and contribution of both isoforms, rather than only NMIIA, to early stages of the contractile system assembly. These data change the current paradigms about dynamics and functions of NMII and provide new conceptual insights into the organization and dynamics of the ubiquitous cellular machinery for contraction that acts in multiple cellular contexts
机译:背景:II类肌球蛋白通过聚合成双极细丝并拉动锚定的肌动蛋白丝来在细胞中产生收缩力。非肌肉肌球蛋白II(NMII)在细胞粘附,迁移,胞质分裂和组织形态发生过程中起着核心作用。 NMII实际上以NMIIA,NMIIB和NMIIC亚型的组织特异性组合形式存在于所有哺乳动物细胞中。仍然鲜为人知的是,在细胞迁移过程中,高度动态的NMII-肌动蛋白收缩系统是如何在新的细胞位置开始组装的,以及如何协调将不同的NMII同工型掺入该系统中。结果:使用铂复制电子显微镜与免疫金标记相结合,我们证明了单个活化的(在调节性轻链上磷酸化且未折叠的)NMIIA和NMIIB分子代表运动细胞中NMII的功能形式,并且NMIIA和NMIIB共聚为新生的双极收缩系统组装过程中的细丝。使用亚衍射刺激的发射耗竭显微镜以及药理学的阻滞和释放方法,我们报道NMIIA和NMIIB在收缩系统组装启动期间同时并入细胞骨架,而NMIIB相对于NMIIA的特征性向后移位在后面的文献中得到证实。 NMII营业额的过程。结论:我们显示了细胞中存在活化的NMII单体,内源性NMIIA和NMIIB分子的共聚以及两种同工型而不是仅NMIIA对收缩系统组装早期的贡献。这些数据改变了有关NMII动力学和功能的当前范例,并为在多种细胞环境中起作用的无处不在的细胞收缩机制的组织和动力学提供了新的概念性见解。

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