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CXIP1的克隆与特性分析,CXIP1是一种与CAX1相关的含PICOT结构域的新型拟南芥蛋白。

Cloning and characterization of CXIP1, a novel PICOT domain-containing Arabidopsis protein that associates with CAX1.

作者信息

Cheng Ning-Hui, Hirschi Kendal D

机构信息

United States Department of Agriculture/Agricultural Research Service Children's Nutrition Research Center, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 2003 Feb 21;278(8):6503-9. doi: 10.1074/jbc.M210883200. Epub 2002 Dec 11.

DOI:10.1074/jbc.M210883200
PMID:12480930
Abstract

Regulation of Ca(2+) transporters is a vital component of signaling. The Arabidopsis H(+)/Ca(2+) exchanger CAX1 contains an N-terminal autoinhibitory domain that prevents Ca(2+) transport when CAX1 is heterologously expressed in yeast. Using a yeast screen, we have identified three different proteins that activate CAX1. One of these, CXIP1 (CAX-interacting protein-1; 19.3 kDa) has amino acid similarity to the C terminus of PICOT (protein kinase C-interacting cousin of thioredoxin) proteins. Although PICOT proteins are found in a variety of organisms, a function has not been previously ascribed to a plant PICOT protein. We demonstrate that CXIP1 activated the CAX1 homolog CAX4, but not CAX2 or CAX3. An Arabidopsis homolog of CXIP1 (CXIP2) weakly activated CAX4, but not CAX1. In a yeast two-hybrid assay, CXIP1 interacted with the N terminus of CAX1. In competition analysis, CXIP1 and a CAX1 N-terminal peptide appeared to bind to similar N-terminal domains of CAX1. Chimeric CAX3 constructs containing the N terminus of CAX1 were activated by CXIP1. In Arabidopsis, CXIP1 transcripts, like CAX1, accumulated in response to different metal conditions. This work thus characterizes a new class of signaling molecules in plants that may regulate CAX transporters in vivo.

摘要

Ca(2+)转运蛋白的调控是信号传导的重要组成部分。拟南芥H(+)/Ca(2+)交换蛋白CAX1含有一个N端自抑制结构域,当CAX1在酵母中异源表达时,该结构域会阻止Ca(2+)转运。通过酵母筛选,我们鉴定出三种不同的激活CAX1的蛋白。其中一种是CXIP1(CAX相互作用蛋白1;19.3 kDa),其氨基酸序列与PICOT(蛋白激酶C相互作用的硫氧还蛋白表亲)蛋白的C端相似。尽管PICOT蛋白存在于多种生物体中,但此前尚未赋予植物PICOT蛋白任何功能。我们证明CXIP1激活了CAX1同源蛋白CAX4,但不激活CAX2或CAX3。CXIP1的拟南芥同源蛋白(CXIP2)对CAX4有微弱激活作用,但不激活CAX1。在酵母双杂交实验中,CXIP1与CAX1的N端相互作用。在竞争分析中,CXIP1和CAX1的N端肽似乎结合到CAX1的相似N端结构域上。含有CAX1 N端的嵌合CAX3构建体被CXIP1激活。在拟南芥中,CXIP1转录本与CAX1一样,在不同金属条件下积累。因此,这项工作鉴定了植物中一类新的信号分子,它们可能在体内调节CAX转运蛋白。

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