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同步辐射 X 射线纤维衍射揭示完整青蛙骨骼肌中肌球蛋白交联桥的头部-头部相互作用。

Head-head interactions of resting myosin crossbridges in intact frog skeletal muscles, revealed by synchrotron x-ray fiber diffraction.

机构信息

Institute for Protein Research, Osaka University, Suita, Osaka, Japan.

出版信息

PLoS One. 2012;7(12):e52421. doi: 10.1371/journal.pone.0052421. Epub 2012 Dec 20.

Abstract

The intensities of the myosin-based layer lines in the x-ray diffraction patterns from live resting frog skeletal muscles with full thick-thin filament overlap from which partial lattice sampling effects had been removed were analyzed to elucidate the configurations of myosin crossbridges around the thick filament backbone to nanometer resolution. The repeat of myosin binding protein C (C-protein) molecules on the thick filaments was determined to be 45.33 nm, slightly longer than that of myosin crossbridges. With the inclusion of structural information for C-proteins and a pre-powerstroke head shape, modeling in terms of a mixed population of regular and perturbed regions of myosin crown repeats along the filament revealed that the myosin filament had azimuthal perturbations of crossbridges in addition to axial perturbations in the perturbed region, producing pseudo-six-fold rotational symmetry in the structure projected down the filament axis. Myosin crossbridges had a different organization about the filament axis in each of the regular and perturbed regions. In the regular region that lacks C-proteins, there were inter-molecular interactions between the myosin heads in axially adjacent crown levels. In the perturbed region that contains C-proteins, in addition to inter-molecular interactions between the myosin heads in the closest adjacent crown levels, there were also intra-molecular interactions between the paired heads on the same crown level. Common features of the interactions in both regions were interactions between a portion of the 50-kDa-domain and part of the converter domain of the myosin heads, similar to those found in the phosphorylation-regulated invertebrate myosin. These interactions are primarily electrostatic and the converter domain is responsible for the head-head interactions. Thus multiple head-head interactions of myosin crossbridges also characterize the switched-off state and have an important role in the regulation or other functions of myosin in thin filament-regulated muscles as well as in the thick filament-regulated muscles.

摘要

从具有完整粗-细丝重叠的活体休息青蛙骨骼肌的 X 射线衍射图谱中去除部分晶格采样效应后,分析了肌球蛋白层线的强度,以阐明肌球蛋白交联桥在粗丝骨架周围的纳米分辨率结构。确定肌球蛋白结合蛋白 C(C 蛋白)分子在粗丝上的重复长度为 45.33nm,略长于肌球蛋白交联桥的重复长度。结合 C 蛋白的结构信息和预功头形状,根据沿丝的肌球蛋白冠重复的规则和扰动区域的混合种群进行建模,表明肌球蛋白丝除了在扰动区域具有轴向扰动外,还具有交叉桥的角向扰动,从而在沿丝轴向下投影的结构中产生假六重旋转对称。肌球蛋白交联桥在规则和扰动区域的丝轴周围具有不同的组织。在缺乏 C 蛋白的规则区域,轴向相邻冠层水平的肌球蛋白头之间存在分子间相互作用。在含有 C 蛋白的扰动区域,除了最接近相邻冠层水平的肌球蛋白头之间的分子间相互作用外,同一冠层水平上的配对头之间也存在分子内相互作用。两个区域相互作用的共同特征是肌球蛋白头的 50kDa 结构域的一部分和转换器结构域之间的相互作用,类似于在磷酸化调节的无脊椎动物肌球蛋白中发现的相互作用。这些相互作用主要是静电相互作用,转换器结构域负责头对头相互作用。因此,肌球蛋白交联桥的多个头对头相互作用也表征了关闭状态,并在薄丝调节肌肉和粗丝调节肌肉中肌球蛋白的调节或其他功能中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d66/3527512/8debdf28f437/pone.0052421.g001.jpg

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