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碱性亮氨酸拉链(bZIP)调控蛋白不透明2中的基本结构域具有两种独立功能:DNA结合和核定位。

The basic domain in the bZIP regulatory protein Opaque2 serves two independent functions: DNA binding and nuclear localization.

作者信息

Varagona M J, Raikhel N V

机构信息

Michigan State University Department of Energy Plant Research Laboratory, East Lansing 48824-1312.

出版信息

Plant J. 1994 Feb;5(2):207-14. doi: 10.1046/j.1365-313x.1994.05020207.x.

Abstract

For organisms to grow and develop, transcriptional regulatory proteins must localize to the nucleus. This movement is mediated by nuclear localization sequences (NLSs) which consist of short stretches of basic amino acids that are part of the structure of mature nuclear proteins. Two NLSs have been previously identified in the maize regulatory protein Opaque2 (O2), a member of the basic-domain, leucine-zipper (bZIP) class of proteins. In this report, it has been determined that both of these NLSs are necessary for import of O2, and the focus has been on a functional analysis of the more efficient, bipartite NLS that is present in the basic or DNA-binding domain. A mutation which contains altered amino acids on both parts of this NLS severely reduced nuclear targeting, and led to the definition of two classes of bipartite NLSs. Since the bipartite NLS is located in the highly conserved. DNA-binding domain, the dual role of this domain was examined using the maize mutant o2-676, in which a conservative mutation eliminates the DNA-binding function. The o2-676 protein localized to the nucleus in maize and the bZIP domain from the mutant protein was sufficient to redirect a reporter protein to the nucleus in transgenic plant cells. Thus, it was possible to show that the nuclear targeting function of this domain is independent of DNA binding. Sequence conservation of the basic domain of other bZIP proteins suggests that the bifunctionality of this domain may be conserved in all members of this class; a consensus sequence for a bipartite NLS in bZIP proteins is suggested.

摘要

对于生物体的生长和发育而言,转录调节蛋白必须定位于细胞核。这种转运由核定位序列(NLS)介导,核定位序列由短的碱性氨基酸片段组成,这些片段是成熟核蛋白结构的一部分。先前已在玉米调节蛋白不透明2(O2)中鉴定出两个NLS,O2是碱性结构域亮氨酸拉链(bZIP)类蛋白的成员。在本报告中,已确定这两个NLS对于O2的导入都是必需的,并且重点在于对存在于碱性或DNA结合结构域中的更有效的双分NLS进行功能分析。在该NLS的两个部分都含有氨基酸改变的突变严重降低了核靶向能力,并导致定义了两类双分NLS。由于双分NLS位于高度保守的DNA结合结构域中,因此使用玉米突变体o2-676研究了该结构域的双重作用,在该突变体中,一个保守突变消除了DNA结合功能。o2-676蛋白在玉米中定位于细胞核,并且来自突变蛋白的bZIP结构域足以将报告蛋白重定向到转基因植物细胞的细胞核中。因此,有可能表明该结构域的核靶向功能独立于DNA结合。其他bZIP蛋白碱性结构域的序列保守性表明,该结构域的双功能性可能在该类别的所有成员中都是保守的;提出了bZIP蛋白中双分NLS的共有序列。

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