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深入了解植物中 DNA 损伤反应的机制——SUPPRESSOR OF GAMMA RESPONSE 1 的作用:概述。

An insight into the mechanism of DNA damage response in plants- role of SUPPRESSOR OF GAMMA RESPONSE 1: An overview.

机构信息

Department of Botany, UGC Center for Advanced Studies, The University of Burdwan, Golapbag Campus, Burdwan, 713 104, West Bengal, India.

Department of Botany, UGC Center for Advanced Studies, The University of Burdwan, Golapbag Campus, Burdwan, 713 104, West Bengal, India.

出版信息

Mutat Res. 2020 Jan-Apr;819-820:111689. doi: 10.1016/j.mrfmmm.2020.111689. Epub 2020 Jan 23.

Abstract

Because of their sessile lifestyle, plants are inescapably exposed to various kinds of environmental stresses throughout their lifetime. Therefore, to regulate their growth and development, plants constantly monitor the environmental signals and respond appropriately. However, these environmental stress factors, along with some endogenous metabolites, generated in response to environmental stress factors often induce various forms of DNA damage in plants and thus promote genome instability. To maintain the genomic integrity, plants have developed an extensive, sophisticated and coordinated cellular signaling mechanism known as DNA damage response or DDR. DDR evokes a signaling process which initiates with the sensing of DNA damage and followed by the subsequent activation of downstream pathways in many directions to repair and eliminate the harmful effects of DNA damages. SUPPRESSOR OF GAMMA RESPONSE 1 (SOG1), one of the newly identified components of DDR in plant genome, appears to play central role in this signaling network. SOG1 is a member of NAC [NO APICAL MERISTEM (NAM), ARABIDOPSIS TRANSCRIPTION ACTIVATION FACTOR (ATAF), CUP-SHAPED COTYLEDON (CUC)] domain family of transcription factors and involved in a diverse array of function in plants, encompassing transcriptional response to DNA damage, cell cycle checkpoint functions, ATAXIA-TELANGIECTASIA-MUTATED (ATM) or ATAXIA TELANGIECTASIA AND RAD3-RELATED (ATR) mediated activation of DNA damage response and repair, functioning in programmed cell death and regulation of induction of endoreduplication. Although most of the functional studies on SOG1 have been reported in Arabidopsis, some recent reports have indicated diverse functions of SOG1 in various other plant species, including Glycine max, Medicago truncatula, Sorghum bicolour, Oryza sativa and Zea mays, respectively. The remarkable functional diversity shown by SOG1 protein indicates its multitasking capacity. In this review, we integrate information mainly related to functional aspects of SOG1 in the context of DDR in plants. Considering the important role of SOG1 in DDR and its functional diversity, in-depth functional study of this crucial regulatory protein can provide further potential information on genome stability maintenance mechanism in plants in the context of changing environmental condition.

摘要

由于其固着的生活方式,植物在其整个生命周期中不可避免地会受到各种环境压力的影响。因此,为了调节其生长和发育,植物不断监测环境信号并做出适当的反应。然而,这些环境压力因素以及一些内源性代谢物,是对环境压力因素的响应而产生的,它们经常在植物中诱导各种形式的 DNA 损伤,从而促进基因组不稳定。为了维持基因组的完整性,植物已经发展出一种广泛的、复杂的和协调的细胞信号机制,称为 DNA 损伤反应或 DDR。DDR 引发了一个信号过程,该过程始于 DNA 损伤的感应,随后在许多方向上激活下游途径,以修复和消除 DNA 损伤的有害影响。作为植物基因组中 DDR 的新鉴定成分之一的伽马响应抑制物 1(SOG1),似乎在这个信号网络中起着核心作用。SOG1 是 NAC [无顶端分生组织(NAM)、拟南芥转录激活因子(ATAF)、杯状子叶(CUC)] 结构域家族转录因子的一员,涉及植物的多种功能,包括对 DNA 损伤的转录响应、细胞周期检查点功能、共济失调毛细血管扩张突变(ATM)或共济失调毛细血管扩张和 RAD3 相关(ATR)介导的 DNA 损伤反应和修复的激活、在程序性细胞死亡和内复制诱导的调节中的作用。尽管 SOG1 的大多数功能研究都在拟南芥中进行,但最近的一些报道表明,SOG1 在其他一些植物物种中具有不同的功能,包括大豆、蒺藜苜蓿、高粱、水稻和玉米,分别。SOG1 蛋白表现出的显著功能多样性表明其具有多功能性。在这篇综述中,我们主要整合了与植物 DDR 中 SOG1 的功能方面相关的信息。考虑到 SOG1 在 DDR 中的重要作用及其功能多样性,对这种关键调节蛋白的深入功能研究可以在不断变化的环境条件下为植物基因组稳定性维持机制提供进一步的潜在信息。

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