Structural and functional consequences of amino acid substitutions in hemoglobin as manifested in natural and artificial mutants.

Protein sequences & data analysis Pub Date : 1989-02-01
K Imai, D T Shih, J Tame, K Nagai, G Miyazaki
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Abstract

Compiled data for more than 440 natural human hemoglobin mutants with single amino acid substitutions indicate that molecular properties (oxygen binding, structural stability, ease of autooxidization, etc.) of more than half of them are altered in some way and that the mode of alteration is closely related to the region within the hemoglobin molecule in which the substitution takes place. The present study gives a quantitative basis for the correlations. By means of protein engineering, including site-directed mutagenesis, several artificial mutants of human hemoglobin were prepared and their oxygen binding properties were studied to investigate the functional consequences of the amino acid substitutions which have not yet been isolated in natural mutants. These artificial mutants gave straight-forward information regarding the major factors regulating the oxygen affinity of heme and the identification of a Bohr group in the alpha chain. On the other hand the mutants, which were designed to test some hypotheses for the molecular evolution in hemoglobin, did not necessarily give the results predicted from accumulated structure-function data obtained from the study of natural mutants and X-ray crystallographic analyses.

天然和人工突变血红蛋白中氨基酸取代的结构和功能后果。
对440多个具有单氨基酸取代的天然人血红蛋白突变体的编译数据表明,其中一半以上的突变体的分子性质(氧结合、结构稳定性、自氧化性等)发生了某种程度的改变,而这种改变的方式与血红蛋白分子内发生取代的区域密切相关。本研究为这种相关性提供了定量基础。利用蛋白质工程技术,包括定点诱变,制备了几种人血红蛋白人工突变体,并研究了它们的氧结合特性,以研究天然突变体中尚未分离到的氨基酸取代对其功能的影响。这些人工突变体提供了关于调节血红素氧亲和力的主要因素和α链中玻尔基团的鉴定的直接信息。另一方面,这些突变体是为了测试血红蛋白分子进化的一些假设而设计的,并不一定能给出从自然突变体研究和x射线晶体学分析中获得的积累的结构-功能数据所预测的结果。
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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