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全能性sup45抑制突变体恢复呼吸能力可能是由继发性sup45突变引起的。

Reversions to respiratory competence of omnipotent sup45 suppressor mutants may be caused by secondary sup45 mutations.

作者信息

Mironova L N, Samsonova M G, Zhouravleva G A, Kulikov V N, Soom M J

机构信息

Department of Genetics, St. Petersburg St. University, Russia.

出版信息

Curr Genet. 1995 Feb;27(3):195-200. doi: 10.1007/BF00326148.

Abstract

The molecular nature of the sup45 respiratory deficient omnipotent suppressor, and of three reversions to respiratory competence which removed the suppressor effect of the initial mutation, was examined. All reversions were caused by secondary sup45 mutations which indicates a direct connection between sup45 "respiratory" and "translational" functions. Computer analysis showed the local changes of Sup45 protein characteristics in the suppressor strain and revertants in comparison to the wild-type protein. The distribution of mutant sites in relation to evolutionary conserved, and tentatively functional, regions in the Sup45 protein is discussed.

摘要

对sup45呼吸缺陷型全能抑制子以及三个恢复呼吸能力(消除了初始突变的抑制效应)的回复突变的分子性质进行了研究。所有回复突变均由继发的sup45突变引起,这表明sup45的“呼吸”功能与“翻译”功能之间存在直接联系。计算机分析显示,与野生型蛋白相比,抑制菌株和回复突变体中Sup45蛋白特征发生了局部变化。讨论了突变位点相对于Sup45蛋白中进化保守且暂定具有功能的区域的分布情况。

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