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粗糙脉孢菌正调控CYS3调节蛋白不同区域的功能分析。

Functional analysis of different regions of the positive-acting CYS3 regulatory protein of Neurospora crassa.

作者信息

Coulter K R, Marzluf G A

机构信息

Department of Biochemistry, The Ohio State University 484 West 12th Avenue, Columbus, OH 43210, USA.

出版信息

Curr Genet. 1998 Jun;33(6):395-405. doi: 10.1007/s002940050352.

Abstract

In the filamentous fungus Neurospora crassa during conditions of sulfur limitation, CYS3, a major positive-acting regulatory protein, turns on the expression of an entire set of genes which encode permeases and enzymes involved in the acquisition of sulfur from environmental sources. CYS3 functions as a homodimeric protein and possesses a b-Zip domain that confers sequence-specific DNA binding. Expression of various hybrid GAL4-CYS3 fusion proteins in yeast was used to detect regions involved in gene activation. An amino-terminal serine/threonine-rich domain of CYS3 alone strongly activated expression of beta-galactosidase, the yeast reporter. Moreover, mutant CYS3 proteins with amino-acid substitutions in this region that showed increased expression in Neurospora also displayed an enhanced activation potential in yeast. The cys-3 gene of the exotic N. crassa Mauriceville strain and of N. intermedia were cloned and demonstrated to be functional for gene activation and for sulfur-mediated regulation by complementation of a loss-of-function cys-3 mutation. The amino-terminal serine/threonine-rich region is highly conserved in these two CYS3 proteins, in agreement with the possibility that it serves as the activation domain. Surprisingly, an extended promoter region of the cys-3 gene in the Mauriceville strain and in N. intermedia was very well conserved with that of the standard N. crassa gene, including the presence of three CYS3-binding sites possibly involved in autogenous control. Results are presented which indicate that synthesis of the CYS3 regulatory protein is highly regulated and can be detected in the nucleus of cells subjected to sulfur de-repression, but is not found in the nucleus or the cytoplasm of S-repressed cells. The amino-acid substitutions of the CYS3 protein present in a temperature-sensitive cys-3 mutant and in a second-site revertant of a cys-3 null mutation are presented and are shown to affect their DNA-binding activities.

摘要

在丝状真菌粗糙脉孢菌中,当处于硫限制条件时,主要的正向调节蛋白CYS3会开启一整套基因的表达,这些基因编码参与从环境中获取硫的通透酶和酶。CYS3作为一种同源二聚体蛋白发挥作用,并拥有一个赋予序列特异性DNA结合能力的b-Zip结构域。通过在酵母中表达各种杂交GAL4-CYS3融合蛋白来检测参与基因激活的区域。单独的CYS3富含丝氨酸/苏氨酸的氨基末端结构域强烈激活了酵母报告基因β-半乳糖苷酶的表达。此外,在该区域具有氨基酸取代且在脉孢菌中表达增加的突变型CYS3蛋白在酵母中也表现出增强的激活潜力。外来的粗糙脉孢菌莫里斯维尔菌株和中间脉孢菌的cys-3基因被克隆,并通过对功能缺失的cys-3突变的互补作用证明其对基因激活和硫介导的调节具有功能。这两种CYS3蛋白中富含丝氨酸/苏氨酸的氨基末端区域高度保守,这与它作为激活结构域的可能性一致。令人惊讶的是,莫里斯维尔菌株和中间脉孢菌中cys-3基因的延伸启动子区域与标准粗糙脉孢菌基因的启动子区域非常保守,包括存在三个可能参与自身调控的CYS3结合位点。结果表明,CYS3调节蛋白的合成受到高度调控,在硫去阻遏的细胞的细胞核中可以检测到,但在硫阻遏的细胞的细胞核或细胞质中未发现。给出了存在于温度敏感型cys-3突变体和cys-3缺失突变的第二位点回复体中的CYS3蛋白的氨基酸取代情况,并表明它们会影响其DNA结合活性。

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