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首页> 外文期刊>The Journal of biological chemistry >High Resolution Characterization of Myosin IIC Protein Tailpiece and Its Effect on Filament Assembly
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High Resolution Characterization of Myosin IIC Protein Tailpiece and Its Effect on Filament Assembly

机译:肌球蛋白IIC蛋白尾部的高分辨率表征及其对长丝组件的影响

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The motor protein nonmuscle myosin II (NMII) must undergo dynamic oligomerization into filaments to perform its cellular functions. A small nonhelical region at the tail of the long coiled-coil region (tailpiece) is a common feature of all dynamically assembling myosin II proteins. This tailpiece is a key regulatory domain affecting NMII filament assembly properties and is subject to phosphorylation in vivo. We previously demonstrated that the positively charged region of the tailpiece binds to assembly-incompetent NMII-C fragments, inducing filament assembly. In the current study, we investigated the molecular mechanisms by which the tailpiece regulates NMII-C self-assembly. Using alanine scan, we found that specific positive and aromatic residues within the positively charged region of the tailpiece are important for inducing NMII-C filament assembly and for filament elongation. Combining peptide arrays with deletion studies allowed us to identify the tailpiece binding sites in the coiled-coil rod. Elucidation of the mechanism by which the tailpiece induces filament assembly permitted us further investigation into the role of tailpiece phosphorylation. Sedimentation and CD spectroscopy identified that phosphorylation of Thr1957 or Thr1960 inhibited the ability of the tailpiece to bind the coiled-coil rod and to induce NMII-C filament formation. This study provides molecular insight into the role of specific residues within the NMII-C tailpiece that are responsible for shifting the oligomeric equilibrium of NMII-C toward filament assembly and determining its morphology.
机译:电机蛋白质非肌肉肌蛋白II(NMII)必须经过动态的寡聚化成长丝以进行细胞功能。长卷绕线圈区域(尾机)的尾部处的小非耳区域是所有动态组装肌苷II蛋白的共同特征。该尾部是影响NMII长丝组装性能的关键调节结构域,并且经过体内磷酸化。我们之前证明尾部带正电的区域与组装无能的NMII-C片段结合,诱导丝组件。在目前的研究中,我们研究了尾机调节NMII-C自组装的分子机制。使用丙氨酸扫描,我们发现在尾部的带正电荷区域内的特定正和芳族残基对于诱导NMII-C丝组件和细丝伸长是重要的。将具有缺失研究的肽阵列组合使我们允许我们识别卷绕线圈中的尾标装订位点。阐明尾机诱导丝组件的机理允许我们进一步调查尾磷酸化的作用。沉淀和CD光谱鉴定为THR1957或THR1960的磷酸化抑制了尾管粘合卷轴杆的能力并诱导NMII-C长丝形成。该研究提供了对NMII-C尾部内特定残基的作用的分子见解,该作用负责将NMII-C的低聚平衡转向丝组件并确定其形态。

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