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首页> 外文期刊>The Plant Cell >DNA replication factor C1 mediates genomic stability and transcriptional gene silencing in Arabidopsis.
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DNA replication factor C1 mediates genomic stability and transcriptional gene silencing in Arabidopsis.

机译:DNA复制因子C1介导拟南芥的基因组稳定性和转录基因沉默。

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摘要

Genetic screening identified a suppressor of ros1-1, a mutant of REPRESSOR OF SILENCING1 (ROS1; encoding a DNA demethylation protein). The suppressor is a mutation in the gene encoding the largest subunit of replication factor C (RFC1). This mutation of RFC1 reactivates the unlinked 35S-NPTII transgene, which is silenced in ros1 and also increases expression of the pericentromeric Athila retrotransposons named transcriptional silent information in a DNA methylation-independent manner. rfc1 is more sensitive than the wild type to the DNA-damaging agent methylmethane sulphonate and to the DNA inter- and intra- cross-linking agent cisplatin. The rfc1 mutant constitutively expresses the G2/M-specific cyclin CycB1;1 and other DNA repair-related genes. Treatment with DNA-damaging agents mimics the rfc1 mutation in releasing the silenced 35S-NPTII, suggesting that spontaneously induced genomic instability caused by the rfc1 mutation might partially contribute to the released transcriptional gene silencing (TGS). The frequency of somatic homologous recombination is significantly increased in the rfc1 mutant. Interestingly, ros1 mutants show increased telomere length, but rfc1 mutants show decreased telomere length and reduced expression of telomerase. Our results suggest that RFC1 helps mediate genomic stability and TGS in Arabidopsis thaliana.
机译:遗传筛选确定了 ros1-1 的抑制剂,它是SILENCING1的 REPRESSOR的突变体( ROS1 ;编码DNA去甲基化蛋白)。抑制子是编码复制因子C(RFC1)最大亚基的基因中的突变。 RFC1的这种突变会重新激活未连接的 35S-NPTII 转基因,该基因在 ros1 中沉默并且还增加了名为的着丝粒 Athila 逆转座子的表达。以DNA甲基化独立的方式>转录沉默信息。 rfc1 比野生型对DNA破坏剂甲基甲烷磺酸盐和DNA交联和交联剂顺铂更敏感。 rfc1 突变体组成型表达G2 / M特异性细胞周期蛋白 CycB1; 1 和其他与DNA修复相关的基因。用DNA破坏剂进行处理可模仿 rfc1 突变,释放沉默的 35S-NPTII ,这表明由 rfc1 突变引起的基因组不稳定性可能部分有助于释放的转录基因沉默(TGS)。在 rfc1 突变体中,体细胞同源重组的频率显着增加。有趣的是, ros1 突变体显示出端粒长度增加,而 rfc1 突变体显示出端粒长度减少且端粒酶表达降低。我们的结果表明,RFC1有助于介导拟南芥(irabidopsis thaliana)的基因组稳定性和TGS。

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