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拟南芥中一种保守复制蛋白的突变以不依赖DNA甲基化的方式抑制转录基因沉默。

Mutations in a conserved replication protein suppress transcriptional gene silencing in a DNA-methylation-independent manner in Arabidopsis.

作者信息

Kapoor Avnish, Agarwal Manu, Andreucci Andrea, Zheng Xianwu, Gong Zhizhong, Hasegawa Paul M, Bressan Ray A, Zhu Jian-Kang

机构信息

Institute for Integrative Genome Biology and Department of Botany and Plant Sciences, University of California, Riverside, Riverside, California 92521, USA.

出版信息

Curr Biol. 2005 Nov 8;15(21):1912-8. doi: 10.1016/j.cub.2005.09.013.

Abstract

Mutations in the DNA glycosylase/lyase ROS1 cause transcriptional silencing of the linked RD29A-LUC and 35S-NPTII transgenes in Arabidopsis. We report here that mutations in the Arabidopsis RPA2 locus release the silencing of 35S-NPTII but not RD29A-LUC in the ros1 mutant background. The rpa2 mutation also leads to enhanced expression of some transposons. Neither DNA methylation nor siRNAs at any of the reactivated loci are blocked by rpa2. Histone H3 methylation at lysine 4 was increased and histone H3 methylation at lysine 9 was decreased at the 35S promoter in the ros1rpa2 mutant compared to the ros1 background. RPA2 encodes a nuclear protein similar to the second subunit of the replication protein A conserved from yeast to mammals. Ectopic expression of the Arabidopsis RPA2 could complement the yeast rfa2 (rpa2) mutant. These results suggest an essential role of RPA2 in the maintenance of transcriptional gene silencing at specific loci in a DNA-methylation-independent manner. In addition, we found that rpa2 mutants are hypersensitive to the genotoxic agent methyl methanesulphonate, and the RPA2 protein interacts with ROS1 in vitro and in vivo, suggesting that RPA2 also functions together with ROS1 in DNA repair.

摘要

DNA糖基化酶/裂解酶ROS1中的突变导致拟南芥中相连的RD29A-LUC和35S-NPTII转基因的转录沉默。我们在此报告,在ros1突变体背景下,拟南芥RPA2基因座中的突变解除了35S-NPTII的沉默,但未解除RD29A-LUC的沉默。rpa2突变还导致一些转座子的表达增强。rpa2不会阻断任何重新激活位点的DNA甲基化或小干扰RNA。与ros1背景相比,ros1rpa2突变体中35S启动子处赖氨酸4的组蛋白H3甲基化增加,赖氨酸9的组蛋白H3甲基化减少。RPA2编码一种核蛋白,类似于从酵母到哺乳动物保守的复制蛋白A的第二个亚基。拟南芥RPA2的异位表达可以互补酵母rfa2(rpa2)突变体。这些结果表明RPA2在以不依赖DNA甲基化的方式维持特定基因座的转录基因沉默中起重要作用。此外,我们发现rpa2突变体对遗传毒性剂甲磺酸甲酯高度敏感,并且RPA2蛋白在体外和体内与ROS1相互作用,表明RPA2也与ROS1一起在DNA修复中起作用。

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