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首页> 外文期刊>Biochemical and Biophysical Research Communications >Electron microscopy and three-dimensional reconstruction of native thin filaments reveal species-specific differences in regulatory strand densities.
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Electron microscopy and three-dimensional reconstruction of native thin filaments reveal species-specific differences in regulatory strand densities.

机译:电子显微镜和天然细丝的三维重建揭示了调节链密度的物种特异性差异。

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Throughout the animal kingdom striated muscle contraction is regulated by the thin filament troponin-tropomyosin complex. Homologous regulatory components are shared among vertebrate and arthropod muscles; however, unique protein extensions and/or components characterize the latter. The Troponin T (TnT) isoforms of Drosophila indirect flight and tarantula femur muscle for example contain distinct C-terminal extensions and are approximately 20% larger overall than their vertebrate counterpart. Using electron microscopy and three-dimensional helical reconstruction of native Drosophila, tarantula and frog muscle thin filaments we have identified species-specific differences in tropomyosin regulatory strand densities. The strands on the arthropod thin filaments were significantly larger in diameter than those from vertebrates, although not significantly different from each other. These findings reflect differences in the regulatory troponin-tropomyosin complex, which are likely due to the larger TnT molecules aligning and extending along much of the tropomyosin strands' length. Such an arrangement potentially alters the physical properties of the regulatory strands and may help establish contractile characteristics unique to certain arthropod muscles.
机译:在整个动物界中,横纹肌的收缩是由细丝肌钙蛋白-原肌球蛋白复合物调节的。脊椎动物和节肢动物的肌肉共有同源的调节成分。然而,独特的蛋白质延伸和/或成分是后者的特征。果蝇间接飞行和狼蛛股肌的肌钙蛋白T(TnT)亚型例如包含独特的C末端延伸,并且总体上比脊椎动物的对应大20%。使用电子显微镜和天然果蝇,狼蛛和青蛙肌肉细丝的三维螺旋重建,我们已经确定了原肌球蛋白调节链密度的物种特异性差异。节肢动物细丝上的股线直径显着大于脊椎动物,尽管彼此之间没有显着差异。这些发现反映了调节性肌钙蛋白-肌球蛋白复合物的差异,这可能是由于较大的TnT分子沿原肌球蛋白链的大部分长度排列和延伸所致。这样的布置可能改变调节链的物理性质,并且可以帮助建立某些节肢动物肌肉特有的收缩特性。

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