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酵母prp20突变分析及人类同源物RCC1(一种参与染色体凝聚调控的蛋白质)的功能互补作用。

Analysis of yeast prp20 mutations and functional complementation by the human homologue RCC1, a protein involved in the control of chromosome condensation.

作者信息

Fleischmann M, Clark M W, Forrester W, Wickens M, Nishimoto T, Aebi M

机构信息

Institut für Molekularbiologie I, Universität Zürich, Switzerland.

出版信息

Mol Gen Genet. 1991 Jul;227(3):417-23. doi: 10.1007/BF00273932.

Abstract

Mutations in the PRP20 gene of yeast show a pleiotropic phenotype, in which both mRNA metabolism and nuclear structure are affected. srm1 mutants, defective in the same gene, influence the signal transduction pathway for the pheromone response. The yeast PRP20/SRM1 protein is highly homologous to the RCC1 protein of man, hamster and frog. In mammalian cells, this protein is a negative regulator for initiation of chromosome condensation. We report the analysis of two, independently isolated, recessive temperature-sensitive prp20 mutants. They have identical G to A transitions, leading to the alteration of a highly conserved glycine residue to glutamic acid. By immunofluorescence microscopy the PRP20 protein was localized in the nucleus. Expression of the RCC1 protein can complement the temperature-sensitive phenotype of prp20 mutants, demonstrating the functional similarity of the yeast and mammalian proteins.

摘要

酵母PRP20基因的突变表现出多效性表型,其中mRNA代谢和核结构均受影响。srm1突变体在同一基因上存在缺陷,会影响信息素反应的信号转导途径。酵母PRP20/SRM1蛋白与人、仓鼠和青蛙的RCC1蛋白高度同源。在哺乳动物细胞中,该蛋白是染色体浓缩起始的负调节因子。我们报告了对两个独立分离的隐性温度敏感型prp20突变体的分析。它们具有相同的G到A转换,导致一个高度保守的甘氨酸残基变为谷氨酸。通过免疫荧光显微镜观察,PRP20蛋白定位于细胞核中。RCC1蛋白的表达可以互补prp20突变体的温度敏感表型,证明酵母和哺乳动物蛋白的功能相似性。

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