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来自植物光合和非光合质体及线粒体的Clp蛋白酶复合体、其预测的三维结构及功能意义。

Clp protease complexes from photosynthetic and non-photosynthetic plastids and mitochondria of plants, their predicted three-dimensional structures, and functional implications.

作者信息

Peltier Jean-Benoît, Ripoll Daniel R, Friso Giulia, Rudella Andrea, Cai Yang, Ytterberg Jimmy, Giacomelli Lisa, Pillardy Jaroslaw, van Wijk Klaas J

机构信息

Department of Plant Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Biol Chem. 2004 Feb 6;279(6):4768-81. doi: 10.1074/jbc.M309212200. Epub 2003 Oct 30.

Abstract

Tetradecameric Clp protease core complexes in non-photosynthetic plastids of roots, flower petals, and in chloroplasts of leaves of Arabidopsis thaliana were purified based on native mass and isoelectric point and identified by mass spectrometry. The stoichiometry between the subunits was determined. The protease complex consisted of one to three copies of five different serine-type protease Clp proteins (ClpP1,3-6) and four non-proteolytic ClpR proteins (ClpR1-4). Three-dimensional homology modeling showed that the ClpP/R proteins fit well together in a tetradecameric complex and also indicated unique contributions for each protein. Lateral exit gates for proteolysis products are proposed. In addition, ClpS1,2, unique to land plants, tightly interacted with this core complex, with one copy of each per complex. The three-dimensional modeling show that they do fit well on the axial sites of the ClpPR cores. In contrast to plastids, plant mitochondria contained a single approximately 320-kDa homo-tetradecameric ClpP2 complex, without association of ClpR or ClpS proteins. It is surprising that the Clp core composition appears identical in all three plastid types, despite the remarkable differences in plastid proteome composition. This suggests that regulation of plastid proteolysis by the Clp machinery is not through differential regulation of ClpP/R/S gene expression, but rather through substrate recognition mechanisms and regulated interaction of chaperone-like molecules (ClpS1,2 and others) to the ClpP/R core.

摘要

基于原生质量和等电点,对拟南芥根、花瓣的非光合质体以及叶片叶绿体中的十四聚体Clp蛋白酶核心复合物进行了纯化,并通过质谱进行了鉴定。确定了亚基之间的化学计量关系。该蛋白酶复合物由五个不同的丝氨酸型蛋白酶Clp蛋白(ClpP1、3 - 6)的一至三个拷贝和四个非蛋白水解性ClpR蛋白(ClpR1 - 4)组成。三维同源建模表明,ClpP/R蛋白在十四聚体复合物中配合良好,并且还表明了每个蛋白的独特作用。提出了蛋白水解产物的侧向出口门。此外,陆地植物特有的ClpS1、2与该核心复合物紧密相互作用,每个复合物各有一个拷贝。三维建模表明它们确实很好地适配在ClpPR核心的轴向位点上。与质体不同,植物线粒体含有一个单一的约320 kDa的同型十四聚体ClpP2复合物,没有ClpR或ClpS蛋白的结合。令人惊讶的是,尽管质体蛋白质组组成存在显著差异,但在所有三种质体类型中Clp核心组成似乎相同。这表明Clp机制对质体蛋白水解的调节不是通过对ClpP/R/S基因表达的差异调节,而是通过底物识别机制以及伴侣样分子(ClpS1、2等)与ClpP/R核心的调节相互作用。

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