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冬小麦的一种冷调节核酸结合蛋白与细菌冷休克蛋白共有一个结构域。

A cold-regulated nucleic acid-binding protein of winter wheat shares a domain with bacterial cold shock proteins.

作者信息

Karlson Dale, Nakaminami Kentaro, Toyomasu Tomonobu, Imai Ryozo

机构信息

Winter Stress Laboratory, National Agricultural Research Center for Hokkaido Region, Hitsujigaoka 1, Toyohira-ku, Sapporo 062-8555, Japan.

出版信息

J Biol Chem. 2002 Sep 20;277(38):35248-56. doi: 10.1074/jbc.M205774200. Epub 2002 Jul 16.

Abstract

The molecular mechanisms of cold acclimation are still largely unknown; however, it has been established that overwintering plants such as winter wheat increases freeze tolerance during cold treatments. In prokaryotes, cold shock proteins are induced by temperature downshifts and have been proposed to function as RNA chaperones. A wheat cDNA encoding a putative nucleic acid-binding protein, WCSP1, was isolated and found to be homologous to the predominant CspA of Escherichia coli. The putative WCSP1 protein contains a three-domain structure consisting of an N-terminal cold shock domain with two internal conserved consensus RNA binding domains and an internal glycine-rich region, which is interspersed with three C-terminal CX(2)CX(4)HX(4)C (CCHC) zinc fingers. Each domain has been described independently within several nucleotide-binding proteins. Northern and Western blot analyses showed that WCSP1 mRNA and protein levels steadily increased during cold acclimation, respectively. WCSP1 induction was cold-specific because neither abscisic acid treatment, drought, salinity, nor heat stress induced WCSP1 expression. Nucleotide binding assays determined that WCSP1 binds ssDNA, dsDNA, and RNA homopolymers. The capacity to bind dsDNA was nearly eliminated in a mutant protein lacking C-terminal zinc fingers. Structural and expression similarities to E. coli CspA suggest that WCSP1 may be involved in gene regulation during cold acclimation.

摘要

冷驯化的分子机制在很大程度上仍然未知;然而,已经确定像冬小麦这样的越冬植物在冷处理期间会提高抗冻性。在原核生物中,冷休克蛋白由温度下降诱导产生,并被认为具有RNA伴侣的功能。一个编码假定核酸结合蛋白WCSP1的小麦cDNA被分离出来,发现它与大肠杆菌中主要的CspA同源。假定的WCSP1蛋白包含一个三结构域结构,由一个N端冷休克结构域、两个内部保守的共有RNA结合结构域和一个内部富含甘氨酸的区域组成,该区域穿插着三个C端CX(2)CX(4)HX(4)C(CCHC)锌指。每个结构域在几种核苷酸结合蛋白中都有独立的描述。Northern和Western印迹分析表明,在冷驯化过程中,WCSP1的mRNA和蛋白水平分别稳步增加。WCSP1的诱导是冷特异性的,因为脱落酸处理、干旱、盐胁迫或热胁迫均未诱导WCSP1的表达。核苷酸结合试验确定WCSP1能结合单链DNA、双链DNA和RNA同聚物。在缺乏C端锌指的突变蛋白中,结合双链DNA的能力几乎消失。与大肠杆菌CspA在结构和表达上的相似性表明,WCSP1可能参与冷驯化过程中的基因调控。

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