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The Ubiquitin-Specific Protease Subfamily UBP3/UBP4 Is Essential for Pollen Development and Transmission in Arabidopsis

机译:泛素特异性蛋白酶亚家族UBP3 / UBP4对于拟南芥中的花粉发育和传播至关重要。

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摘要

Deubiquitinating enzymes are essential to the ubiquitin (Ub)/26S proteasome system where they release Ub monomers from the primary translation products of poly-Ub and Ub extension genes, recycle Ubs from polyubiquitinated proteins, and reverse the effects of ubiquitination by releasing bound Ubs from individual targets. The Ub-specific proteases (UBPs) are one large family of deubiquitinating enzymes that bear signature cysteine and histidine motifs. Here, we genetically characterize a UBP subfamily in Arabidopsis (Arabidopsis thaliana) encoded by paralogous UBP3 and UBP4 genes. Whereas homozygous ubp3 and ubp4 single mutants do not display obvious phenotypic abnormalities, double-homozygous mutant individuals could not be created due to a defect in pollen development and/or transmission. This pollen defect was rescued with a transgene encoding wild-type UBP3 or UBP4, but not with a transgene encoding an active-site mutant of UBP3, indicating that deubiquitination activity of UBP3/UBP4 is required. Nuclear DNA staining revealed that ubp3 ubp4 pollen often fail to undergo mitosis II, which generates the two sperm cells needed for double fertilization. Substantial changes in vacuolar morphology were also evident in mutant grains at the time of pollen dehiscence, suggesting defects in vacuole and endomembrane organization. Even though some ubp3 ubp4 pollen could germinate in vitro, they failed to fertilize wild-type ovules even in the absence of competing wild-type pollen. These studies provide additional evidence that the Ub/26S proteasome system is important for male gametogenesis in plants and suggest that deubiquitination of one or more targets by UBP3/UBP4 is critical for the development of functional pollen.
机译:去泛素化酶是泛素(Ub)/ 26S蛋白酶体系统必不可少的系统,在该系统中,泛素化酶从多Ub和Ub延伸基因的初级翻译产物中释放Ub单体,从多泛素化蛋白中回收Ub,并通过从中释放结合的Ub逆转泛素化作用。个别目标。 Ub特异性蛋白酶(UBP)是一类大的去泛素化酶,带有标志性的半胱氨酸和组氨酸基序。在这里,我们从遗传上表征了拟南芥(Arabidopsis thaliana)中由旁源UBP3和UBP4基因编码的UBP亚家族。纯合子ubp3和ubp4单个突变体未显示明显的表型异常,而由于花粉发育和/或传播缺陷,无法创建双纯合突变体个体。用编码野生型UBP3或UBP4的转基因挽救了该花粉缺陷,但不使用编码UBP3的活性位点突变体的转基因挽救了花粉缺陷,这表明需要UBP3 / UBP4的去泛素化活性。核DNA染色显示ubp3 ubp4花粉通常无法经历有丝分裂II,这会产生双重受精所需的两个精子细胞。在花粉开裂时,突变粒中的液泡形态也发生了显着变化,这表明液泡和内膜组织存在缺陷。即使某些ubp3 ubp4花粉可以在体外萌发,即使在没有竞争性野生型花粉的情况下,它们也无法使野生型胚珠受精。这些研究提供了其他证据,表明Ub / 26S蛋白酶体系统对于植物中的雄性配子发生很重要,并且表明UBP3 / UBP4对一个或多个靶标进行去泛素化对于功能性花粉的发育至关重要。

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