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SUMO 连接酶 MMS21 通过影响基因组的活性和稳定性,深刻地影响着玉米的发育。

The SUMO ligase MMS21 profoundly influences maize development through its impact on genome activity and stability.

机构信息

Department of Biology, Washington University in St, Louis, St. Louis, Missouri, United States of America.

Department of Horticultural Sciences, University of Florida, Gainesville, Florida, United States of America.

出版信息

PLoS Genet. 2021 Oct 25;17(10):e1009830. doi: 10.1371/journal.pgen.1009830. eCollection 2021 Oct.

Abstract

The post-translational addition of SUMO plays essential roles in numerous eukaryotic processes including cell division, transcription, chromatin organization, DNA repair, and stress defense through its selective conjugation to numerous targets. One prominent plant SUMO ligase is METHYL METHANESULFONATE-SENSITIVE (MMS)-21/HIGH-PLOIDY (HPY)-2/NON-SMC-ELEMENT (NSE)-2, which has been connected genetically to development and endoreduplication. Here, we describe the potential functions of MMS21 through a collection of UniformMu and CRISPR/Cas9 mutants in maize (Zea mays) that display either seed lethality or substantially compromised pollen germination and seed/vegetative development. RNA-seq analyses of leaves, embryos, and endosperm from mms21 plants revealed a substantial dysregulation of the maize transcriptome, including the ectopic expression of seed storage protein mRNAs in leaves and altered accumulation of mRNAs associated with DNA repair and chromatin dynamics. Interaction studies demonstrated that MMS21 associates in the nucleus with the NSE4 and STRUCTURAL MAINTENANCE OF CHROMOSOMES (SMC)-5 components of the chromatin organizer SMC5/6 complex, with in vitro assays confirming that MMS21 will SUMOylate SMC5. Comet assays measuring genome integrity, sensitivity to DNA-damaging agents, and protein versus mRNA abundance comparisons implicated MMS21 in chromatin stability and transcriptional controls on proteome balance. Taken together, we propose that MMS21-directed SUMOylation of the SMC5/6 complex and other targets enables proper gene expression by influencing chromatin structure.

摘要

翻译后的内容为

泛素的翻译后添加在包括细胞分裂、转录、染色质组织、DNA 修复和应激防御在内的许多真核过程中发挥着重要作用,通过其选择性地连接到许多靶标上。一种突出的植物 SUMO 连接酶是甲基甲磺酸敏感(MMS)-21/高倍体(HPY)-2/非 SMC 元件(NSE)-2,它在遗传上与发育和内复制有关。在这里,我们通过收集玉米(Zea mays)中的 UniformMu 和 CRISPR/Cas9 突变体来描述 MMS21 的潜在功能,这些突变体表现出种子致死或花粉发芽和种子/营养体发育严重受损。mms21 植株的叶片、胚胎和胚乳的 RNA-seq 分析显示,玉米转录组发生了严重失调,包括种子贮藏蛋白 mRNA 在叶片中的异位表达和与 DNA 修复和染色质动力学相关的 mRNA 积累的改变。相互作用研究表明,MMS21 在核内与染色质组织因子 SMC5/6 复合物的 NSE4 和 STRUCTURAL MAINTENANCE OF CHROMOSOMES(SMC)-5 组成部分相互作用,体外实验证实 MMS21 将 SUMOylates SMC5。彗星试验测量基因组完整性、对 DNA 损伤剂的敏感性以及蛋白质与 mRNA 丰度的比较表明,MMS21 参与了染色质稳定性和对蛋白质组平衡的转录控制。总之,我们提出 MMS21 定向的 SMC5/6 复合物和其他靶标的 SUMOylation 通过影响染色质结构来实现适当的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90dc/8568144/6fa29e374ceb/pgen.1009830.g001.jpg

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