Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute, 29 Geumgu-gil, Jeongeup-si, Jeollabuk-do, 56212, Korea.
Department of Biotechnology, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju, 61186, Korea.
Plant J. 2019 Apr;98(1):83-96. doi: 10.1111/tpj.14201. Epub 2019 Jan 30.
The plant-specific transcription factor (TF) NAC103 was previously reported to modulate the unfolded protein response in Arabidopsis under endoplasmic reticulum (ER) stress. Alternatively, we report here that NAC103 is involved in downstream signaling of SOG1, a master regulator for expression of DNA damage response (DDR) genes induced by genotoxic stress. Arabidopsis NAC103 expression was strongly induced by genotoxic stress and nac103 mutants displayed substantial inhibition of DDR gene expression after gamma radiation or radiomimetic zeocin treatment. DDR phenotypes, such as true leaf inhibition, root cell death and root growth inhibition, were also suppressed significantly in the nac103 mutants, but to a lesser extent than in the sog1-1 mutant. By contrast, overexpression of NAC103 increased DDR gene expression without genotoxic stress and substantially rescued the phenotypic changes in the sog1-1 mutant after zeocin treatment. The putative promoters of some representative DDR genes, RAD51, PARP1, RPA1E, BRCA1 and At4g22960, were found to partly interact with NAC103. Together with the expected interaction of SOG1 with the promoter of NAC103, our study suggests that NAC103 is a putative SOG1-dependent transcriptional regulator of plant DDR genes, which are responsible for DDR phenotypes under genotoxic stress.
先前有报道称,植物特异性转录因子(TF)NAC103 可在拟南芥内质网(ER)应激下调节未折叠蛋白反应。然而,我们在这里报告称,NAC103 参与 SOG1 的下游信号转导,SOG1 是由遗传毒性应激诱导的 DNA 损伤反应(DDR)基因表达的主要调节剂。拟南芥 NAC103 的表达受遗传毒性应激强烈诱导,nac103 突变体在γ辐射或放射模拟 zeocin 处理后 DDR 基因表达受到显著抑制。在 nac103 突变体中,DDR 表型,如真叶抑制、根细胞死亡和根生长抑制,也显著受到抑制,但程度低于 sog1-1 突变体。相比之下,在没有遗传毒性应激的情况下,NAC103 的过表达会增加 DDR 基因的表达,并在 zeocin 处理后显著挽救 sog1-1 突变体的表型变化。一些代表性 DDR 基因,如 RAD51、PARP1、RPA1E、BRCA1 和 At4g22960 的假定启动子被发现与 NAC103 部分相互作用。结合 SOG1 与 NAC103 启动子的预期相互作用,我们的研究表明,NAC103 是植物 DDR 基因的一个假定的 SOG1 依赖性转录调节剂,该基因负责遗传毒性应激下的 DDR 表型。