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Snake cube puzzle and protein folding

机译:蛇立方体拼图和蛋白质折叠

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The snake cube puzzle made of a linear array of 27 cubes and its modified and extended versions are used as theoretical models to study the mechanism of folding of proteins into their sequence-specific native three-dimensional structures. Each of the three versions is characterized by the respective set of characteristics attributed to each of its constituent cubes and an array is characterized by its specific sequence of the cube characteristics. The aim of the puzzles is to fold the cube array into a compact 3×3×3 cubic structure. In all three versions, out of all possible sequences, only a limited fraction of sequences are found foldable into the compact cube. Even among foldable sequences, the structures folded into the compact 3×3×3 cube are found often not uniquely determined from the sequence. By comparing the results obtained for the three versions of models, we conclude that the power of the hydrophobic interactions to make the folded structure unique to the sequence is much weaker than the geometrical varieties of constituent cubes as modelled in the original snake cube puzzle. However, when this weak cube attribute is compounded to that of the original snake cube puzzle, the power is enhanced very effectively. This is a strong manifestation of the consistency principle: The sequence-specific native structure of protein is realized as a result of consistency of various types of interactions working in protein.2019 ? The Biophysical Society of Japan.
机译:由27个立方体和修改和扩展版本的线性阵列制成的蛇立方体拼图用作研究蛋白质折叠成其序列特异性三维结构的理论模型。这三个版本中的每一个的特征在于归因于其每个组成多维数据集的各个特征集,并且阵列的特征是其特定的立方体特征序列。谜题的目的是将立方体阵列折叠成紧凑的3×3×3立方结构。在所有三种版本中,在所有可能的序列中,发现有限的序列被发现折叠到紧凑的立方体中。即使在可折叠序列中,也发现折叠到紧凑3×3×3立方体中的结构通常不会从序列中唯一确定。通过比较所获得的三种模型的结果,我们得出结论,疏水相互作用的力量使序列独特的折叠结构比在原始蛇立方体拼图中所设计的构成立方体的几何品种较弱。然而,当这种弱的立方体属性与原始蛇立方体拼图的那个弱者复合时,功率得到了非常有效的。这是一致性原理的强烈表现:蛋白质的序列原生物结构是由于在蛋白质中工作的各种类型相互作用的一致性而实现?日本的生物物理学学会。

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