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拟南芥UVH1基因是酵母修复内切核酸酶RAD1的同源物。

The Arabidopsis UVH1 gene is a homolog of the yeast repair endonuclease RAD1.

作者信息

Fidantsef A L, Mitchell D L, Britt A B

机构信息

Section of Plant Biology, University of California, Davis, California 95616, USA.

出版信息

Plant Physiol. 2000 Oct;124(2):579-86. doi: 10.1104/pp.124.2.579.

Abstract

Ultraviolet radiation induces DNA damage products, largely in the form of pyrimidine dimers, that are both toxic and mutagenic. In most organisms, including Arabidopsis, these lesions are repaired both through a dimer-specific photoreactivation mechanism and through a less efficient light-independent mechanism. Several mutants defective in this "dark repair" pathway have been previously described. The mechanism of this repair has not been elucidated, but is thought to be homologous to the nucleotide excision repair mechanisms found in other eukaryotes. Here we report the complementation of the Arabidopsis uvh1 dark repair mutant with the Arabidopsis homolog of the yeast nucleotide excision repair gene RAD1, which encodes one of the subunits of the 5'-repair endonuclease. The uvh1-2 mutant allele carries a glycine-->aspartate amino acid change that has been previously identified to produce a null allele of RAD1 in yeast. Although Arabidopsis homologs of genes involved in nucleotide excision repair are readily identified by searching the genomic database, it has not been established that these homologs are actually required for dark repair in plants. The complementation of the Arabidopsis uvh1 mutation with the Arabidopsis RAD1 homolog clearly demonstrates that the mechanism of nucleotide excision repair is conserved among the plant, animal, and fungal kingdoms.

摘要

紫外线辐射会诱导DNA损伤产物,主要以嘧啶二聚体的形式存在,这些产物既具有毒性又具有致突变性。在包括拟南芥在内的大多数生物体中,这些损伤可通过二聚体特异性光复活机制以及效率较低的不依赖光的机制进行修复。此前已描述了几种在这种“暗修复”途径中存在缺陷的突变体。这种修复机制尚未阐明,但被认为与其他真核生物中发现的核苷酸切除修复机制同源。在此我们报道,用酵母核苷酸切除修复基因RAD1的拟南芥同源物对拟南芥uvh1暗修复突变体进行互补,该基因编码5'-修复内切核酸酶的一个亚基。uvh1-2突变等位基因携带甘氨酸到天冬氨酸的氨基酸变化,此前已确定该变化在酵母中会产生RAD1的无效等位基因。尽管通过搜索基因组数据库很容易鉴定出参与核苷酸切除修复的基因的拟南芥同源物,但尚未确定这些同源物在植物暗修复中是否真的是必需的。用拟南芥RAD1同源物对拟南芥uvh1突变进行互补清楚地表明,核苷酸切除修复机制在植物、动物和真菌界中是保守的。

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Molecular genetics of DNA repair in higher plants.高等植物中DNA修复的分子遗传学
Trends Plant Sci. 1999 Jan;4(1):20-25. doi: 10.1016/s1360-1385(98)01355-7.
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DNA repair in eukaryotes.真核生物中的DNA修复
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DNA excision repair.DNA切除修复
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