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粗糙脉孢菌的正向作用硫调节蛋白CYS3:核定位、自体调控及转录激活所需区域。

The positive-acting sulfur regulatory protein CYS3 of Neurospora crassa: nuclear localization, autogenous control, and regions required for transcriptional activation.

作者信息

Kanaan M N, Marzluf G A

机构信息

Department of Biochemistry, Ohio State University, Columbus 43210.

出版信息

Mol Gen Genet. 1993 Jun;239(3):334-44. doi: 10.1007/BF00276931.

Abstract

The positive-acting global sulfur regulatory protein, CYS3, of Neurospora crassa turns on the expression of a family of unlinked structural genes that encode enzymes of sulfur catabolism. CYS3 contains a leucine zipper and an adjacent basic region (b-zip), which together constitute a bipartite sequence-specific DNA-binding domain. Specific anti-CYS3 antibodies detected a protein of the expected size in nuclear extracts of wild-type Neurospora under conditions in which the sulfur circuit is activated. The CYS3 protein was not observed in cys-3 mutants. Nuclear extracts of wild type, but not cys-3 mutants, also showed specific DNA-binding activity identical to that obtained with a CYS3 protein expressed in Escherichia coli. A truncated CYS3 protein that contains primarily the b-zip domain binds to DNA with high specificity and affinity in vitro, yet fails to activate gene expression in vivo, and instead inhibits the function of the wild-type CYS3 protein. Amino-terminal, carboxyterminal, and internal deletions as well as alanine scanning mutagenesis were employed to identify regions of the CYS3 protein that are required for its trans-activation function. Regions of CYS3 carboxy terminal to the b-zip motif are not completely essential for function although loss of an alanine-rich region results in decreased activity. All deletions amino terminal to the b-zip motif led to a complete loss of CYS3 function. Alanine scanning mutagenesis demonstrated that an unusual prolinerich domain of CYS3 appears to be very important for function and is presumed to constitute an activation domain. It is concluded that CYS3 displays nuclear localization and positive autogenous control in Neurospora and functions as a trans-acting DNA-binding protein.

摘要

粗糙脉孢菌的正向作用全局硫调节蛋白CYS3开启了一族不连锁的结构基因的表达,这些基因编码硫分解代谢的酶。CYS3含有一个亮氨酸拉链和一个相邻的碱性区域(b-zip),它们共同构成一个二分序列特异性DNA结合结构域。在硫代谢途径被激活的条件下,特异性抗CYS3抗体在野生型粗糙脉孢菌的核提取物中检测到了预期大小的蛋白质。在cys-3突变体中未观察到CYS3蛋白。野生型而非cys-3突变体的核提取物也显示出与在大肠杆菌中表达的CYS3蛋白相同的特异性DNA结合活性。一种主要包含b-zip结构域的截短CYS3蛋白在体外能以高特异性和亲和力与DNA结合,但在体内不能激活基因表达,反而抑制野生型CYS3蛋白的功能。采用氨基末端、羧基末端和内部缺失以及丙氨酸扫描诱变来鉴定CYS3蛋白其反式激活功能所需的区域。b-zip基序羧基末端的CYS3区域对功能并非完全必需,尽管富含丙氨酸区域的缺失会导致活性降低。b-zip基序氨基末端的所有缺失都会导致CYS3功能完全丧失。丙氨酸扫描诱变表明,CYS3一个不寻常的富含脯氨酸结构域似乎对功能非常重要,推测其构成一个激活结构域。得出的结论是,CYS3在粗糙脉孢菌中表现出核定位和正向自身调控,并作为一种反式作用DNA结合蛋白发挥作用。

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