Proteolytic control of the RNA silencing machinery.

IF 10 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Cell Pub Date : 2024-09-03 DOI:10.1093/plcell/koae075
Pascal Genschik, Marlene Schiaffini, Esther Lechner
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Abstract

Studies in plants were often pioneering in the field of RNA silencing and revealed a broad range of small RNA (sRNA) categories. When associated with ARGONAUTE (AGO) proteins, sRNAs play important functions in development, genome integrity, stress responses, and antiviral immunity. Today, most of the protein factors required for the biogenesis of sRNA classes, their amplification through the production of double-stranded RNA, and their function in transcriptional and posttranscriptional regulation have been identified. Nevertheless, and despite the importance of RNA silencing, we still know very little about their posttranslational regulation. This is in stark contrast with studies in metazoans, where different modifications such as prolyl hydroxylation, phosphorylation, sumoylation, ubiquitylation, and others have been reported to alter the activity and stability of key factors, such as AGO proteins. Here, we review current knowledge of how key components of the RNA silencing machinery in plants are regulated during development and by microbial hijacking of endogenous proteases.

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RNA 沉默机制的蛋白水解控制
植物研究往往是 RNA 沉默领域的先驱,揭示了小 RNA (sRNA) 的广泛类别。当 sRNA 与 ARGONAUTE(AGO)蛋白相关联时,它们在发育、基因组完整性、应激反应和抗病毒免疫中发挥着重要功能。如今,sRNA 类生物发生、通过产生双链 RNA 扩增以及在转录和转录后调控中发挥作用所需的大多数蛋白质因子都已确定。然而,尽管 RNA 沉默非常重要,我们对它们的翻译后调控仍然知之甚少。这与在元古动物中的研究形成了鲜明的对比,在元古动物中,脯氨酰羟化、磷酸化、苏木酰化、泛素化等不同的修饰被报道会改变 AGO 蛋白等关键因子的活性和稳定性。在此,我们回顾了目前关于植物 RNA 沉默机制的关键组分如何在发育过程中以及通过微生物劫持内源蛋白酶进行调控的知识。
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来源期刊
Plant Cell
Plant Cell 生物-生化与分子生物学
CiteScore
16.90
自引率
5.20%
发文量
337
审稿时长
2.4 months
期刊介绍: Title: Plant Cell Publisher: Published monthly by the American Society of Plant Biologists (ASPB) Produced by Sheridan Journal Services, Waterbury, VT History and Impact: Established in 1989 Within three years of publication, ranked first in impact among journals in plant sciences Maintains high standard of excellence Scope: Publishes novel research of special significance in plant biology Focus areas include cellular biology, molecular biology, biochemistry, genetics, development, and evolution Primary criteria: articles provide new insight of broad interest to plant biologists and are suitable for a wide audience Tenets: Publish the most exciting, cutting-edge research in plant cellular and molecular biology Provide rapid turnaround time for reviewing and publishing research papers Ensure highest quality reproduction of data Feature interactive format for commentaries, opinion pieces, and exchange of information in review articles, meeting reports, and insightful overviews.
期刊最新文献
Small protein, big effects: ENOD93 alters mitochondrial ATP production to favor nitrogen assimilation in plants. The strigolactone receptor DWARF14 regulates flowering time in Arabidopsis. MAC3A and MAC3B mediate degradation of the transcription factor ERF13 and thus promote lateral root emergence. Rapid depletion of target proteins in plants by an inducible protein degradation system. Proteolytic control of the RNA silencing machinery.
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