Spatial Structures of Fibrillar Proteins

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Abstract

The protein molecules are considerate in the space of the highest dimension with a change in dimension with demand at the conformation of the molecules. It was shown that the widespread quasi-plane model of the Pouling protein structure do not reflect and even contradict the spatial structures of the protein in various conformations. It was found that the linear structures and folded structures of the protein in space of the highest dimension have translational symmetry. The elementary elements of protein translational symmetry were determined, their dimensions were calculated (9 for the linear structures and 23 for folded structures).
纤维蛋白的空间结构
蛋白质分子在最高维度的空间中被考虑,在分子的构象上随需求的变化而变化。结果表明,Pouling蛋白结构的普遍准平面模型不能反映蛋白质在各种构象中的空间结构,甚至与之相矛盾。发现蛋白质在最高维空间中的线性结构和折叠结构具有平移对称性。确定了蛋白质平移对称的基本元素,计算了它们的维数(线性结构为9,折叠结构为23)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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