首页> 美国卫生研究院文献>Journal of Experimental Botany >Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
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Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development

机译:拟南芥SPF1和SPF2是位于核中的类ULP2 SUMO蛋白酶在植物发育中作用于SIZ1的下游

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摘要

Post-translational modifiers such as the small ubiquitin-like modifier (SUMO) peptide act as fast and reversible protein regulators. Functional characterization of the sumoylation machinery has determined the key regulatory role that SUMO plays in plant development. Unlike components of the SUMO conjugation pathway, SUMO proteases (ULPs) are encoded by a relatively large gene family and are potential sources of specificity within the pathway. This study reports a thorough comparative genomics and phylogenetic characterization of plant ULPs, revealing the presence of one ULP1-like and three ULP2-like SUMO protease subgroups within plant genomes. As representatives of an under-studied subgroup, Arabidopsis SPF1 and SPF2 were subjected to functional characterization. Loss-of-function mutants implicated both proteins with vegetative growth, flowering time, and seed size and yield. Mutants constitutively accumulated SUMO conjugates, and yeast complementation assays associated these proteins with the function of ScUlp2 but not ScUlp1. Fluorescence imaging placed both proteins in the plant cell nucleoplasm. Transcriptomics analysis indicated strong regulatory involvement in secondary metabolism, cell wall remodelling, and nitrate assimilation. Furthermore, developmental defects of the spf1-1 spf2-2 (spf1/2) double-mutant opposed those of the major E3 ligase siz1 mutant and, most significantly, developmental and transcriptomic characterization of the siz1 spf1/2 triple-mutant placed SIZ1 as epistatic to SPF1 and SPF2.
机译:翻译后修饰子,例如小泛素样修饰子(SUMO)肽,起着快速而可逆的蛋白质调节剂的作用。 SUMO化机制的功能特性决定了SUMO在植物发育中的关键调控作用。与SUMO偶联途径的组成部分不同,SUMO蛋白酶(ULP)由相对较大的基因家族编码,并且是该途径内特异性的潜在来源。这项研究报告了植物ULP的全面比较基因组学和系统发育特征,揭示了植物基因组中存在一个ULP1样和三个ULP2样SUMO蛋白酶亚组。作为研究不足的亚组的代表,拟南芥SPF1和SPF2进行了功能表征。功能丧失的突变体使两种蛋白质都具有营养生长,开花时间以及种子大小和产量。突变体组成性地积累了SUMO缀合物,酵母互补分析将这些蛋白质与ScUlp2的功能相关,但与ScUlp1的功能无关。荧光成像将两种蛋白质都置于植物细胞核质中。转录组学分析表明,在次级代谢,细胞壁重塑和硝酸盐同化方面有很强的调节作用。此外,spf1-1 spf2-2(spf1 / 2)双突变体的发育缺陷与主要E3连接酶siz1突变体的缺陷相反,最重要的是,siz1 spf1 / 2三突变体的发育和转录组学特征将SIZ1定位为上位于SPF1和SPF2。

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