抑制γ反应1通过诱导CCS52A1在拟南芥根中的表达,促进DNA双链断裂时的早期内复制。

IF 2.7 3区 生物学 Q2 PLANT SCIENCES
Toshiki Wada, Ayako N Sakamoto, Naoki Takahashi
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引用次数: 0

摘要

由于DNA复制错误、活性氧和紫外线辐射等因素,生物体不断面临DNA损伤的风险。在植物中,DNA损伤激活nac型转录因子抑制γ反应1 (SOG1), SOG1控制DNA损伤反应,如细胞周期阻滞、干细胞死亡和内复制的早期发作。然而,DNA损伤诱发早期内复制的分子机制尚不清楚。在这项研究中,我们发现CELL CYCLE SWITCH 52A1 (CCS52A1), APC/C E3连接酶的激活剂,在响应DNA双链断裂(DSBs)的拟南芥根系早期内复制中起主要作用。在dsb上,SOG1直接结合CCS52A1位点,从而诱导其表达。此外,在ccs52a1基因敲除根中,DSBs应答的早期向内复制的过渡受到抑制。我们的数据表明,增加的多倍体可能是植物对遗传毒性胁迫的一种独特的适应机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SUPPRESOR OF GAMMA RESPONSE 1 promotes early onset of endoreplication upon DNA double-strand breaks by inducing CCS52A1 expression in Arabidopsis roots.

Living organisms are constantly at the risk of DNA damage caused by factors such as DNA replication errors, reactive oxygen species, and UV radiation. In plants, DNA damage activates the NAC-type transcription factor SUPPRESSOR OF GAMMA RESPONSE 1 (SOG1) that governs DNA damage responses such as cell cycle arrest, stem cell death, and early onset of endoreplication. However, molecular mechanisms underlying the early induction of endoreplication onset in response to DNA damage remain elusive. In this study, we show that CELL CYCLE SWITCH 52 A1 (CCS52A1), an activator of the APC/C E3 ligase, plays a major role in the early onset of endoreplication in response to DNA double-strand breaks (DSBs) in Arabidopsis roots. Upon DSBs, SOG1 directly binds to the CCS52A1 locus, thereby inducing its expression. Moreover, early transition to endoreplication in response to DSBs is suppressed in ccs52a1 knockout roots. Our data propose that increased polyploidy may function as a unique adaptative mechanism to genotoxic stress in plants.

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来源期刊
Journal of Plant Research
Journal of Plant Research 生物-植物科学
CiteScore
5.40
自引率
3.60%
发文量
59
审稿时长
1 months
期刊介绍: The Journal of Plant Research is an international publication that gathers and disseminates fundamental knowledge in all areas of plant sciences. Coverage extends to every corner of the field, including such topics as evolutionary biology, phylogeography, phylogeny, taxonomy, genetics, ecology, morphology, physiology, developmental biology, cell biology, molecular biology, biochemistry, biophysics, bioinformatics, and systems biology. The journal presents full-length research articles that describe original and fundamental findings of significance that contribute to understanding of plants, as well as shorter communications reporting significant new findings, technical notes on new methodology, and invited review articles.
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