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植物小分子热激蛋白超家族:拟南芥中的五个具有意外特性的新成员。

The plant sHSP superfamily: five new members in Arabidopsis thaliana with unexpected properties.

作者信息

Siddique Masood, Gernhard Sascha, von Koskull-Döring Pascal, Vierling Elizabeth, Scharf Klaus-Dieter

机构信息

Molecular Cell Biology, Johann Wolfgang Goethe University, Biocenter N200, Max-von-Laue-Strasse 9, Frankfurt am Main, Germany.

出版信息

Cell Stress Chaperones. 2008 Summer;13(2):183-97. doi: 10.1007/s12192-008-0032-6. Epub 2008 Mar 28.

Abstract

The small heat shock proteins (sHsps), which are ubiquitous stress proteins proposed to act as chaperones, are encoded by an unusually complex gene family in plants. Plant sHsps are classified into different subfamilies according to amino acid sequence similarity and localization to distinct subcellular compartments. In the whole Arabidopsis thaliana genome, 19 genes were annotated to encode sHsps, of which 14 belong to previously defined plant sHsp families. In this paper, we report studies of the five additional sHsp genes in A. thaliana, which can now be shown to represent evolutionarily distinct sHsp subfamilies also found in other plant species. While two of these five sHsps show expression patterns typical of the other 14 genes, three have unusual tissue specific and developmental profiles and do not respond to heat induction. Analysis of intracellular targeting indicates that one sHsp represents a new class of mitochondrion-targeted sHsps, while the others are cytosolic/nuclear, some of which may cooperate with other sHsps in formation of heat stress granules. Three of the five new proteins were purified and tested for chaperone activity in vitro. Altogether, these studies complete our basic understanding of the sHsp chaperone family in plants.

摘要

小热激蛋白(sHsps)是一类普遍存在的应激蛋白,被认为具有伴侣蛋白的功能,由植物中一个异常复杂的基因家族编码。植物小热激蛋白根据氨基酸序列相似性和在不同亚细胞区室中的定位被分为不同的亚家族。在拟南芥整个基因组中,有19个基因被注释为编码小热激蛋白,其中14个属于先前定义的植物小热激蛋白家族。在本文中,我们报道了对拟南芥中另外5个小热激蛋白基因的研究,现在可以证明它们代表了在其他植物物种中也存在的进化上不同的小热激蛋白亚家族。虽然这5个小热激蛋白中的两个表现出与其他14个基因典型的表达模式,但另外3个具有不寻常的组织特异性和发育谱,并且对热诱导没有反应。细胞内靶向分析表明,一个小热激蛋白代表了一类新的靶向线粒体的小热激蛋白,而其他的是胞质/核的,其中一些可能在热应激颗粒的形成中与其他小热激蛋白协同作用。对这5种新蛋白中的3种进行了纯化,并在体外测试了它们的伴侣活性。总之,这些研究完善了我们对植物小热激蛋白伴侣家族的基本认识。

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