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鉴定新型 smORFs 和微蛋白在响应鱼腥藻鞭毛藻再水合时的作用。

Identification of novel smORFs and microprotein acting in response to rehydration of Nostoc flagelliforme.

机构信息

School of Life Sciences and Hubei Key Laboratory of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan, Hubei, PR China.

出版信息

Proteomics. 2023 Jun;23(12):e2200473. doi: 10.1002/pmic.202200473. Epub 2023 Apr 3.

DOI:10.1002/pmic.202200473
PMID:36947710
Abstract

Nostoc flagelliforme, a terrestrial cyanobacterium spread throughout arid and semi-arid areas, has been long known for its outstanding adaptability to extremely dry conditions. This microorganism is able to recover biological activities within hours after months of anhydrobiosis state, attracting investigation through proteomic analysis. Except for canonical proteome, microproteins encoded by small ORFs (smORFs) have recently been regarded as indispensable participants in metabolic processes. However, the involvement of smORFs in N. flagelliforme remains unknown. Here we first constructed a smORF database in N. flagelliforme using bioinformatic prediction, resulting in 6072 novel smORFs. Then LS-MS/MS analysis was applied to identify expression patterns of microproteins and seek smORFs and their encoded microprotein playing a role during rehydration. In total, 18 novel microproteins were mined based on a smORF searching strategy combined with three proteomic assays, of which five were annotated as ribosomal proteins, one as RNA polymerase subunit, and one as acetohydroxy acid isomeroreductase. We also suggested the possible functions of smORFs according to their expression pattern and discovered two neighboring and homologous smORFs. All these results will expand our knowledge of smORFs-encoded microproteins and their relation to the stress response of extremophilic microorganisms.

摘要

发菜,一种分布于干旱和半干旱地区的陆生蓝藻,以其对极端干燥条件的出色适应能力而闻名已久。这种微生物能够在经历数月的脱水休眠状态后,在数小时内恢复生物活性,这引起了人们通过蛋白质组学分析进行研究。除了典型的蛋白质组外,由小开放阅读框 (smORFs) 编码的微蛋白最近被认为是代谢过程中不可或缺的参与者。然而,smORFs 在发菜中的参与情况尚不清楚。在这里,我们首次使用生物信息学预测在发菜中构建了 smORF 数据库,得到了 6072 个新的 smORFs。然后应用 LS-MS/MS 分析来鉴定微蛋白的表达模式,并寻找在复水过程中发挥作用的 smORFs 及其编码的微蛋白。总共基于 smORF 搜索策略和三种蛋白质组学分析方法挖掘了 18 种新型微蛋白,其中 5 种被注释为核糖体蛋白,1 种被注释为 RNA 聚合酶亚基,1 种被注释为乙酰羟酸异构还原酶。我们还根据它们的表达模式提出了 smORFs 的可能功能,并发现了两个相邻和同源的 smORFs。所有这些结果将扩展我们对 smORFs 编码的微蛋白及其与极端微生物应激反应的关系的认识。

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Proteomics. 2023 Jun;23(12):e2200473. doi: 10.1002/pmic.202200473. Epub 2023 Apr 3.
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