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RecA 维持拟南芥叶绿体 DNA 分子的完整性。

RecA maintains the integrity of chloroplast DNA molecules in Arabidopsis.

机构信息

Department of Biology, University of Washington, Seattle, WA 91895 USA.

出版信息

J Exp Bot. 2010 Jun;61(10):2575-88. doi: 10.1093/jxb/erq088. Epub 2010 Apr 20.

Abstract

Although our understanding of mechanisms of DNA repair in bacteria and eukaryotic nuclei continues to improve, almost nothing is known about the DNA repair process in plant organelles, especially chloroplasts. Since the RecA protein functions in DNA repair for bacteria, an analogous function may exist for chloroplasts. The effects on chloroplast DNA (cpDNA) structure of two nuclear-encoded, chloroplast-targeted homologues of RecA in Arabidopsis were examined. A homozygous T-DNA insertion mutation in one of these genes (cpRecA) resulted in altered structural forms of cpDNA molecules and a reduced amount of cpDNA, while a similar mutation in the other gene (DRT100) had no effect. Double mutants exhibited a similar phenotype to cprecA single mutants. The cprecA mutants also exhibited an increased amount of single-stranded cpDNA, consistent with impaired RecA function. After four generations, the cprecA mutant plants showed signs of reduced chloroplast function: variegation and necrosis. Double-stranded breaks in cpDNA of wild-type plants caused by ciprofloxacin (an inhibitor of Escherichia coli gyrase, a type II topoisomerase) led to an alteration of cpDNA structure that was similar to that seen in cprecA mutants. It is concluded that the process by which damaged DNA is repaired in bacteria has been retained in their endosymbiotic descendent, the chloroplast.

摘要

虽然我们对细菌和真核细胞核中 DNA 修复机制的理解不断提高,但对植物细胞器,特别是叶绿体中的 DNA 修复过程几乎一无所知。由于 RecA 蛋白在细菌的 DNA 修复中起作用,因此叶绿体中可能存在类似的功能。本研究检测了拟南芥中两个核编码的、靶向叶绿体的 RecA 同源物对叶绿体 DNA(cpDNA)结构的影响。其中一个基因(cpRecA)的纯合 T-DNA 插入突变导致 cpDNA 分子的结构形式发生改变,cpDNA 含量减少,而另一个基因(DRT100)的类似突变则没有影响。双突变体表现出与 cprecA 单突变体相似的表型。cprecA 突变体也表现出单链 cpDNA 含量增加,这与 RecA 功能受损一致。经过四代后,cprecA 突变体植物表现出叶绿体功能下降的迹象:斑驳和坏死。环丙沙星(一种抑制大肠杆菌拓扑异构酶 II 的抑制剂)引起野生型植物 cpDNA 的双链断裂,导致 cpDNA 结构发生类似于 cprecA 突变体的改变。结论是,细菌中受损 DNA 的修复过程在其内共生后代——叶绿体中得以保留。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/952f/2882256/443447a2b9fb/jexboterq088f01_ht.jpg

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