Blanvillain Robert, Kim Jong Heon, Wu Shimei, Lima Amparo, Ow David W
Plant Gene Expression Center, USDA-ARS, 800 Buchanan Street, Albany, CA 94710, USA.
Plant J. 2009 Feb;57(4):654-65. doi: 10.1111/j.1365-313X.2008.03717.x. Epub 2008 Nov 24.
A cDNA expression library from Brassica juncea was introduced into the fission yeast Schizosaccharomyces pombe to select for transformants tolerant to cadmium. Transformants expressing OXIDATIVE STRESS 3 (OXS3) or OXS3-Like cDNA exhibited enhanced tolerance to a range of metals and oxidizing chemicals. OXS3 belongs to a family of proteins that share a highly conserved domain corresponding to a putative N-acetyltransferase or thioltransferase catalytic site. Mutations within this conserved domain abolished the ability of Arabidopsis thaliana OXS3 to enhance stress tolerance in S. pombe, indicating a role in stress tolerance for the presumptive catalytic domain. A stress-sensitive mutant of AtOXS3 and enhanced tolerance of overexpression lines support the role of OXS3 in stress tolerance. The expression of tagged B. juncea and A. thaliana OXS3 proteins in plant cells revealed a subnuclear speckling pattern related to the nucleosome in discrete parts of the chromatin. It is possible that OXS3 might act as a chromatin remodeling factor for the stress response.
将来自芥菜型油菜的一个cDNA表达文库导入裂殖酵母粟酒裂殖酵母中,以筛选对镉耐受的转化体。表达氧化应激3(OXS3)或类OXS3 cDNA的转化体对一系列金属和氧化化学物质表现出增强的耐受性。OXS3属于一个蛋白质家族,该家族共享一个高度保守的结构域,对应于一个假定的N-乙酰转移酶或硫醇转移酶催化位点。该保守结构域内的突变消除了拟南芥OXS3增强粟酒裂殖酵母应激耐受性的能力,表明推定的催化结构域在应激耐受性中起作用。AtOXS3的应激敏感突变体和过表达系增强的耐受性支持了OXS3在应激耐受性中的作用。标记的芥菜型油菜和拟南芥OXS3蛋白在植物细胞中的表达揭示了一种与染色质离散部分中的核小体相关的亚核斑点模式。OXS3有可能作为应激反应的染色质重塑因子发挥作用。