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Myosin II Tailpiece Determines Its Paracrystal Structure, Filament Assembly Properties, and Cellular Localization

机译:Myosin II尾座确定其准晶体结构,细丝装配特性和细胞定位

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摘要

Non muscle myosin II (NMII) is a major motor protein present in all cell types. The three known vertebrate NMII isoforms share high sequence homology but play different cellular roles. The main difference in sequence resides in the C-terminal non-helical tailpiece (tailpiece). In this study we demonstrate that the tailpiece is crucial for proper filament size, overcoming the intrinsic properties of the coiled-coil rod. Furthermore, we show that the tailpiece by itself determines the NMII filament structure in an isoform-specific manner, thus providing a possible mechanism by which each NMII isoform carries out its unique cellular functions. We further show that the tailpiece determines the cellular localization of NMII-A and NMII-B and is important for NMII-C role in focal adhesion complexes. We mapped NMII-C sites phosphorylated by protein kinase C and casein kinase II and showed that these phosphorylations affect its solubility properties and cellular localization. Thus phosphorylation fine-tunes the tailpiece effects on the coiled-coil rod, enabling dynamic regulation of NMII-C assembly. We thus show that the small tailpiece of NMII is a distinct domain playing a role in isoform-specific filament assembly and cellular functions.
机译:非肌肉肌球蛋白II(NMII)是存在于所有细胞类型中的主要运动蛋白。三种已知的脊椎动物NMII亚型共享高序列同源性,但发挥不同的细胞作用。顺序上的主要区别在于C端非螺旋形尾件(尾件)。在这项研究中,我们证明了尾部对于克服合适的长丝尺寸至关重要,克服了盘绕棒的固有特性。此外,我们表明,尾翼本身以特定于异构体的方式决定NMII细丝结构,从而为每种NMII异构体执行其独特的细胞功能提供了可能的机制。我们进一步表明,尾管决定了NMII-A和NMII-B的细胞定位,并且对于NMII-C在粘着斑复合物中的作用很重要。我们绘制了由蛋白激酶C和酪蛋白激酶II磷酸化的NMII-C位点,并显示这些磷酸化影响其溶解性和细胞定位。因此,磷酸化可微调螺旋线圈杆上的尾弦效果,从而可以动态调节NMII-C组件。因此,我们表明,NMII的小尾巴是一个独特的域,在异构体特异性细丝组装和细胞功能中发挥作用。

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