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拟南芥中一个干旱胁迫诱导型组蛋白基因是植物连接组蛋白变体独特类别的成员。

A drought-stress-inducible histone gene in Arabidopsis thaliana is a member of a distinct class of plant linker histone variants.

作者信息

Ascenzi R, Gantt J S

机构信息

Department of Plant Biology, University of Minnesota, St. Paul 55108, USA.

出版信息

Plant Mol Biol. 1997 Jul;34(4):629-41. doi: 10.1023/a:1005886011722.

Abstract

We have isolated and characterized a gene, His1-3, encoding a structurally divergent linker histone in Arabidopsis thaliana. Southern and northern hybridization data indicate that A. thaliana expresses three single-copy linker histone genes, each encoding a structurally distinct variant. H1-3 is a considerably smaller protein (167 amino acids with a mass of 19.0 kDa) than any other described linker histone from higher eukaryotes. We examined the expression of His1-3 at the RNA and protein levels and found that it is induced specifically by water stress. In contrast, expression of His1-1, His1-2 and His4 appear unaffected by water stress. Furthermore, the primary structure of the protein possesses distinct characteristics that are shared with another drought-inducible linker histone, H1-D, isolated from Lycopersicon pennellii. Based on structural characteristics of the deduced protein and its inducible expression, we hypothesize that H1-3 and H1-D are linker histone variants that have specialized roles in the structure and function of plant chromatin and therefore they can be considered to be members of a unique subclass of plant histones. Immunoblotting with an antibody produced against a short polypeptide in the conserved domain of this subtype indicates that similar proteins may exist in other plants.

摘要

我们已经从拟南芥中分离并鉴定了一个名为His1-3的基因,该基因编码一种结构上不同的连接组蛋白。Southern和Northern杂交数据表明,拟南芥表达三个单拷贝的连接组蛋白基因,每个基因编码一种结构上不同的变体。H1-3是一种比来自高等真核生物的任何其他已描述的连接组蛋白都小得多的蛋白质(167个氨基酸,质量为19.0 kDa)。我们在RNA和蛋白质水平上检测了His1-3的表达,发现它是由水分胁迫特异性诱导的。相比之下,His1-1、His1-2和His4的表达似乎不受水分胁迫的影响。此外,该蛋白质的一级结构具有与从潘那利番茄中分离出的另一种干旱诱导型连接组蛋白H1-D共有的独特特征。基于推导蛋白质的结构特征及其诱导表达,我们推测H1-3和H1-D是连接组蛋白变体,在植物染色质的结构和功能中具有特殊作用,因此它们可被视为植物组蛋白独特亚类的成员。用针对该亚型保守结构域中的短多肽产生的抗体进行免疫印迹表明,其他植物中可能存在类似的蛋白质。

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