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The Crystal-Solution Problem of Sperm Whale Myoglobin

机译:抹香鲸肌红蛋白的晶体解决问题

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摘要

The central question to be discussed in this paper is whether the structure established for sperm whale myoglobin in the crystalline state is the same as that of the protein in solution. As judged by its ultraviolet optical rotatory dispersion, the helical content of metmyoglobin in solution does not differ from that in the crystal, 77 per cent. Although an uncertainty of about ±5 per cent must attach to this result, it excludes many alternative arrangements of the polypeptide chain. The folding of the chain may be further restricted to the basic form seen in the crystal if the dimensions of the molecule in solution and the interactions of specific chemical groups are taken into account. Since the rotatory dispersion of metmyoglobin is constant with respect to ionic strength, and since the dispersions of reduced and oxymyoglobin reveal no change in helical content upon their formation from metmyoglobin, one may infer that the structure of the protein is largely maintained both as it dissolves and during its reversible combination with oxygen. The crystallographic model of myoglobin thus offers a structural basis for attempting to explain its physiological function in solution. The relevance of this conclusion to the crystal-solution problems presented by other species of protein is then best seen in the light of common factors that govern the equilibrium of all proteins between crystal and solution.
机译:本文要讨论的中心问题是,在结晶状态下为抹香鲸肌红蛋白建立的结构是否与溶液中蛋白质的结构相同。根据其紫外旋光色散判断,溶液中的肌红蛋白的螺旋含量与晶体中的含量无差异,为77%。尽管此结果必须具有约±5%的不确定性,但它排除了多肽链的许多其他排列方式。如果考虑到溶液中分子的大小和特定化学基团的相互作用,则链的折叠可进一步限制为晶体中可见的基本形式。由于肌红蛋白的旋转分散度相对于离子强度是恒定的,并且由于还原型和肌红蛋白的分散体在从肌红蛋白形成后螺旋含量没有变化,因此可以推断出蛋白质的结构在溶解时很大程度上得以维持以及与氧气可逆结合的过程中。因此,肌红蛋白的晶体学模型为试图解释其在溶液中的生理功能提供了结构基础。然后,根据控制晶体和溶液之间所有蛋白质平衡的共同因素,可以最好地看出该结论与其他蛋白质种类所提出的晶体溶液问题的相关性。

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