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鉴定植物 RAD52 同源物和拟南芥 RAD52 样基因的特征。

Identification of plant RAD52 homologs and characterization of the Arabidopsis thaliana RAD52-like genes.

机构信息

Department of Plant Sciences, Weizman Institute of Science, Rehovot, Israel.

出版信息

Plant Cell. 2011 Dec;23(12):4266-79. doi: 10.1105/tpc.111.091744. Epub 2011 Dec 27.

Abstract

RADiation sensitive52 (RAD52) mediates RAD51 loading onto single-stranded DNA ends, thereby initiating homologous recombination and catalyzing DNA annealing. RAD52 is highly conserved among eukaryotes, including animals and fungi. This article reports that RAD52 homologs are present in all plants whose genomes have undergone extensive sequencing. Computational analyses suggest a very early RAD52 gene duplication, followed by later lineage-specific duplications, during the evolution of higher plants. Plant RAD52 proteins have high sequence similarity to the oligomerization and DNA binding N-terminal domain of RAD52 proteins. Remarkably, the two identified Arabidopsis thaliana RAD52 genes encode four open reading frames (ORFs) through differential splicing, each of which specifically localized to the nucleus, mitochondria, or chloroplast. The A. thaliana RAD52-1A ORF provided partial complementation to the yeast rad52 mutant. A. thaliana mutants and RNA interference lines defective in the expression of RAD52-1 or RAD52-2 showed reduced fertility, sensitivity to mitomycin C, and decreased levels of intrachromosomal recombination compared with the wild type. In summary, computational and experimental analyses provide clear evidence for the presence of functional RAD52 DNA-repair homologs in plants.

摘要

辐射敏感 52 蛋白(RAD52)介导 RAD51 加载到单链 DNA 末端,从而启动同源重组并催化 DNA 退火。RAD52 在真核生物中高度保守,包括动物和真菌。本文报道称,RAD52 同源物存在于所有经过广泛测序的植物基因组中。计算分析表明,在高等植物的进化过程中,RAD52 基因发生了非常早期的基因复制,随后是谱系特异性的复制。植物 RAD52 蛋白与 RAD52 蛋白的寡聚和 DNA 结合 N 端结构域具有很高的序列相似性。值得注意的是,两个鉴定出的拟南芥 RAD52 基因通过差异剪接编码四个开放阅读框(ORFs),每个 ORF 都特异性定位于细胞核、线粒体或叶绿体。拟南芥 RAD52-1A ORF 对酵母 rad52 突变体提供了部分互补。与野生型相比,RAD52-1 或 RAD52-2 表达缺陷的拟南芥突变体和 RNA 干扰系表现出生育力降低、对丝裂霉素 C 的敏感性增加以及染色体内重组水平降低。总之,计算和实验分析为植物中存在功能性 RAD52 DNA 修复同源物提供了明确的证据。

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