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Refined structure of bony fish muscle myosin filaments from low-angle X-ray diffraction data

机译:从低角度X射线衍射数据看骨鱼肌肉肌球蛋白丝的细化结构

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Application of X-ray diffraction methods to the elucidation of the arrangement of the myosin heads on myosin filaments in resting muscles is made simpler when the muscles themselves are well ordered in 3D. Bony fish muscle for the vertebrates and insect flight muscle for the invertebrates are the muscles of choice for this analysis. The rich, well-sampled, low-angle X-ray diffraction pattern from bony fish muscle has previously been modelled with an R-factor of 3.4% between observed and calculated transforms on the assumption that the two heads in one myosin molecule have the same shape. However, recent evidence from other kinds of analysis of other muscles has shown that this assumption may not be valid. There is evidence that the motor domain of one head in each pair may interact with the neck region of the second head. This possibility has been tested directly in the present analysis which extends the X-ray modelling of fish muscle myosin filaments by permitting independent shape changes of the two heads in one molecule. The new model, with a computed R-factor of 1.19% against 56 independent reflections, shows that in fish muscle also there is a marked asymmetry in the organisation of each head pair.
机译:当3D肌肉本身井井有条时,将X射线衍射方法应用于阐明静息肌中肌球蛋白丝上的肌球蛋白头的排列变得更加简单。脊椎动物的Bony鱼肌肉和无脊椎动物的昆虫飞行肌肉是该分析的首选肌肉。以前,假设一个肌球蛋白分子中的两个头部具有相同的假设,那么从观察到的和计算得到的变换之间,R因子为3.4%,可以对来自骨鱼肌肉的丰富,采样良好的低角度X射线衍射图进行建模。形状。但是,最近从其他类型的其他肌肉分析得出的证据表明,这种假设可能无效。有证据表明,每对中的一个头部的运动区域可能与第二个头部的颈部区域相互作用。在本分析中已经直接测试了这种可能性,该分析通过允许一个分子中两个头部的独立形状变化来扩展鱼肌肉肌球蛋白丝的X射线建模。新模型具有针对56个独立反射的1.19%的计算R系数,表明在鱼肌肉中每个头部对的组织中也存在明显的不对称性。

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