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蛋白质中结构域的位置。

Location of structural domains in protein.

作者信息

Wodak S J, Janin J

出版信息

Biochemistry. 1981 Nov 10;20(23):6544-52. doi: 10.1021/bi00526a005.

Abstract

We are surface area measurements based on atomic positions to give a quantitative definition of structural domains in proteins. Segments of the polypeptide chain making a minimum of interactions with the rest of the protein structure are identified on interface area scans, where the area B of the interface between a N-terminal segment of i residues and the complementary C-terminal segment is plotted as a function of i. Domain boundaries appear as minima of B in the scans. The procedure may be iterated to build a hierarchy of subdomains. It detects only continuous domains made of a single stretch of polypeptide chain but may be extended to detect such domains in the presence of discontinuous ones. Domains defined from interface area scans fit very well with globular structural regions identified by inspection of protein models [Wetlaufer, D. B. (1973) Proc. Natl. Acad. Sci U.S.A. 70, 697-701]. They do not in general correspond to the repeated structural units observed in some proteins by superposition studies. In hemoglobin and hen lysozyme, the domains do not correspond to the coding sequences separated by introns in the genes.

摘要

我们基于原子位置进行表面积测量,以对蛋白质中的结构域给出定量定义。在界面面积扫描中可识别出与蛋白质结构其余部分相互作用最少的多肽链片段,其中将由i个残基组成的N端片段与互补C端片段之间的界面面积B绘制为i的函数。结构域边界在扫描中表现为B的最小值。该过程可重复进行以构建子结构域层次结构。它仅检测由单一连续多肽链组成的连续结构域,但在存在不连续结构域的情况下也可扩展用于检测此类结构域。通过界面面积扫描定义的结构域与通过检查蛋白质模型确定的球状结构区域非常吻合[韦特劳弗,D. B.(1973年)《美国国家科学院院刊》70,697 - 701]。它们通常与通过叠加研究在某些蛋白质中观察到的重复结构单元不对应。在血红蛋白和鸡溶菌酶中,结构域与基因中被内含子隔开的编码序列不对应。

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