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Effects of surface-to-volume ratio of proteins on hydrophilic residues: Decrease in occurrence and increase in buried fraction

机译:蛋白质的表面体积比对亲水残基的影响:发生率降低和埋藏率增加

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摘要

The size of a protein is an important factor for understanding the sequence–structure relationship, and it affects both the amino acid composition and the residue burial of proteins. However, it is usually measured as the number of amino acids, although these effects would result from the reduction of surface regions relative to the volume of core regions in larger proteins. In addition, although these two effects are dependent on each other, they have been studied separately. In this study, we investigated them by considering the surface-to-volume ratio (SVR), and observed the correlation between them. We found that the reduction of several hydrophilic residues is more strongly correlated with SVR than with protein size (the number of amino acids) and that SVR directly affects the amino acid composition. The difference as a descriptor between SVR and size is also supported by the observation that the secondary structural elements correlate completely differently with SVR and with size. Furthermore, for the four most hydrophilic residues, glutamine, arginine, glutamic acid, and lysine, balances between the decrease in composition and the increase in core burial were observed. We found that the burial of glutamine and arginine became accelerated at SVR = 0.3 Å−1 (approximately 132 residues) as the protein size increased, but that lysine has an upper limit of 0.9% for its occurrence in the core. The uniqueness of lysine was also elucidated by comparison with the burial environments of the four hydrophilic residues.
机译:蛋白质的大小是了解序列与结构之间关系的重要因素,它会影响蛋白质的氨基酸组成和残留物。但是,通常以氨基酸数量来衡量,尽管这些影响将是由于表面积相对于较大蛋白质核心区域的体积减少而导致的。此外,尽管这两种效果是相互依赖的,但已分别进行了研究。在这项研究中,我们通过考虑表面体积比(SVR)来研究它们,并观察它们之间的相关性。我们发现,几个亲水残基的减少与SVR的关系比与蛋白质大小(氨基酸的数量)的关系更强,并且SVR直接影响氨基酸的组成。观察到的次要结构元素与SVR和尺寸之间的关联也完全不同,这也支持了SVR与尺寸之间的区别。此外,对于四个最亲水的残基,谷氨酰胺,精氨酸,谷氨酸和赖氨酸,观察到组成减少和核心埋葬增加之间的平衡。我们发现,随着蛋白质大小的增加,SVR = 0.3Å -1 (约132个残基)时,谷氨酰胺和精氨酸的埋入被加速,但是赖氨酸的存在上限为0.9%。核心。通过与四个亲水残基的掩埋环境进行比较,还阐明了赖氨酸的独特性。

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