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短期渗透胁迫下的根质膜泛素组。

Root Membrane Ubiquitinome under Short-Term Osmotic Stress.

机构信息

BPMP, CNRS, INRAE, Institut Agro, University Montpellier, 34060 Montpellier, France.

Center for Computational and Theoretical Biology, University of Würzburg, 97070 Würzburg, Germany.

出版信息

Int J Mol Sci. 2022 Feb 10;23(4):1956. doi: 10.3390/ijms23041956.

Abstract

Osmotic stress can be detrimental to plants, whose survival relies heavily on proteomic plasticity. Protein ubiquitination is a central post-translational modification in osmotic-mediated stress. In this study, we used the K-Ɛ-GG antibody enrichment method integrated with high-resolution mass spectrometry to compile a list of 719 ubiquitinated lysine (K-Ub) residues from 450 Arabidopsis root membrane proteins (58% of which are transmembrane proteins), thereby adding to the database of ubiquitinated substrates in plants. Although no ubiquitin (Ub) motifs could be identified, the presence of acidic residues close to K-Ub was revealed. Our ubiquitinome analysis pointed to a broad role of ubiquitination in the internalization and sorting of cargo proteins. Moreover, the simultaneous proteome and ubiquitinome quantification showed that ubiquitination is mostly not involved in membrane protein degradation in response to short osmotic treatment but that it is putatively involved in protein internalization, as described for the aquaporin PIP2;1. Our in silico analysis of ubiquitinated proteins shows that two E2 Ub-conjugating enzymes, UBC32 and UBC34, putatively target membrane proteins under osmotic stress. Finally, we revealed a positive role for UBC32 and UBC34 in primary root growth under osmotic stress.

摘要

渗透胁迫对植物有害,而植物的生存严重依赖于蛋白质组的可塑性。蛋白质泛素化是渗透胁迫介导的应激中的一种核心翻译后修饰。在这项研究中,我们使用 K-Ɛ-GG 抗体富集方法与高分辨率质谱相结合,从 450 个拟南芥根膜蛋白中编译了 719 个泛素化赖氨酸 (K-Ub) 残基列表(其中 58%为跨膜蛋白),从而增加了植物中泛素化底物的数据库。虽然没有鉴定到泛素 (Ub) 基序,但在 K-Ub 附近存在酸性残基。我们的泛素组分析表明,泛素化在货物蛋白的内化和分拣中发挥广泛作用。此外,同时进行的蛋白质组和泛素组定量表明,泛素化在应对短期渗透处理时,主要不参与膜蛋白的降解,而是可能参与蛋白内化,正如水孔蛋白 PIP2;1 所描述的那样。我们对泛素化蛋白的计算机分析表明,两种 E2 Ub 连接酶 UBC32 和 UBC34 可能在渗透胁迫下靶向膜蛋白。最后,我们揭示了 UBC32 和 UBC34 在渗透胁迫下对主根生长的积极作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf13/8879470/80024d7ff817/ijms-23-01956-g001.jpg

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