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首页> 外文期刊>Journal of Molecular Biology >Refined Model of the 10S Conformation of Smooth Muscle Myosin by Cryo-electron Microscopy 3D Image Reconstruction.
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Refined Model of the 10S Conformation of Smooth Muscle Myosin by Cryo-electron Microscopy 3D Image Reconstruction.

机译:通过冷冻电子显微镜3D图像重建细化的平滑肌肌球蛋白10S构型模型。

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摘要

The actin-activated ATPase activity of smooth muscle myosin and heavy meromyosin (smHMM) is regulated by phosphorylation of the regulatory light chain (RLC). Complete regulation requires two intact myosin heads because single-headed myosin subfragments are always active. 2D crystalline arrays of the 10S form of intact myosin, which has a dephosphorylated RLC, were produced on a positively charged lipid monolayer and imaged in 3D at 2.0 nm resolution by cryo-electron microscopy of frozen, hydrated specimens. An atomic model of smooth muscle myosin was constructed from the X-ray structures of the smooth muscle myosin motor domain and essential light chain and a homology model of the RLC was produced based on the skeletal muscle S1 structure. The initial model of the 10S myosin, based on the previous reconstruction of smHMM, was subjected to real space refinement to obtain a quantitative fit to the density. The smHMM was likewise refined and both refined models reveal the same asymmetric interaction between the upper 50 kDa domain of the "blocked" head and parts of the catalytic, converter domains and the essential light chain of the "free" head observed previously. This observation suggests that this interaction is not simply due to crystallographic packing but is enforced by elements of the myosin heads. The 10S reconstruction shows additional alpha-helical coiled-coil not seen in the earlier smHMM reconstruction, but the location of one segment of S2 is the same in both.
机译:平滑肌肌球蛋白和重肌球蛋白(smHMM)的肌动蛋白激活ATPase活性受调节轻链(RLC)磷酸化的调节。完整的调节需要两个完整的肌球蛋白头,因为单头肌球蛋白亚片段始终处于活动状态。具有带去磷酸化的RLC的完整肌球蛋白10S形式的2D晶体阵列在带正电荷的脂质单层上产生,并通过冷冻水合标本的冷冻电子显微镜以2.0 nm分辨率以3D成像。从平滑肌肌球蛋白运动域和基本轻链的X射线结构构建了平滑肌肌球蛋白的原子模型,并基于骨骼肌S1结构生成了RLC的同源性模型。基于先前对smHMM的重建,对10S肌球蛋白的初始模型进行了实际空间优化,以获得与密度的定量拟合。同样还对smHMM进行了改进,并且这两个改进的模型都揭示了先前观察到的“受阻”头的上部50 kDa结构域和催化,转化器域的部分与“自由”头的基本轻链之间相同的不对称相互作用。该观察结果表明这种相互作用不仅是由于晶体学堆积,而且是由肌球蛋白头部的元素所引起的。 10S重建显示了在早期smHMM重建中未看到的其他α-螺旋线圈,但S2的一个片段的位置在两个位置相同。

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