结合核糖体图谱分析和小蛋白优化质谱分析,揭示火山火绒菌的小蛋白质组。

microLife Pub Date : 2023-01-16 eCollection Date: 2023-01-01 DOI:10.1093/femsml/uqad001
Lydia Hadjeras, Jürgen Bartel, Lisa-Katharina Maier, Sandra Maaß, Verena Vogel, Sarah L Svensson, Florian Eggenhofer, Rick Gelhausen, Teresa Müller, Omer S Alkhnbashi, Rolf Backofen, Dörte Becher, Cynthia M Sharma, Anita Marchfelder
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引用次数: 0

摘要

与广泛研究的原核生物 "小 "转录组(包括所有小的非编码 RNA)相比,小蛋白质组(这里定义为包括小于 70 aa 的蛋白质)现在才进入人们的视野。由于大多数原核生物缺乏完整的小蛋白质目录,我们无法了解这些分子是如何影响生理机能的。迄今为止,我们还没有专门针对小蛋白对古生菌基因组进行广泛分析。在这里,我们介绍了一种组合方法,它整合了小蛋白优化质谱(MS)和核糖体分析(Ribo-seq)的实验数据,生成了模型古菌 Haloferax volcanii 的高置信度小蛋白清单。我们通过质谱和核糖体分析(Ribo-seq)证明,在标准生长条件下,317 个已注释的小开放阅读框(sORFs)中有 67% 被翻译。此外,独立于注释的 Ribo-seq 数据分析显示,在基因间区域有 47 个新的 sORF 被核糖体参与。蛋白质组学也检测到了其中的 7 个,此外还有第 8 个新型小蛋白是通过 MS 唯一鉴定到的。我们还利用表位标记和 Western 印迹法提供了 12 个 sORF(已注释和新的)在体内翻译的独立实验证据,强调了我们鉴定方案的有效性。几个新的 sORFs 在 Haloferax 物种中是保守的,可能具有重要功能。根据我们的研究结果,我们得出结论:H. volcanii 的小蛋白质组比以前认识到的要大,结合 MS 与 Ribo-seq 是发现古细菌中新型小蛋白质编码基因的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry.

In contrast to extensively studied prokaryotic 'small' transcriptomes (encompassing all small noncoding RNAs), small proteomes (here defined as including proteins ≤70 aa) are only now entering the limelight. The absence of a complete small protein catalogue in most prokaryotes precludes our understanding of how these molecules affect physiology. So far, archaeal genomes have not yet been analyzed broadly with a dedicated focus on small proteins. Here, we present a combinatorial approach, integrating experimental data from small protein-optimized mass spectrometry (MS) and ribosome profiling (Ribo-seq), to generate a high confidence inventory of small proteins in the model archaeon Haloferax volcanii. We demonstrate by MS and Ribo-seq that 67% of the 317 annotated small open reading frames (sORFs) are translated under standard growth conditions. Furthermore, annotation-independent analysis of Ribo-seq data showed ribosomal engagement for 47 novel sORFs in intergenic regions. A total of seven of these were also detected by proteomics, in addition to an eighth novel small protein solely identified by MS. We also provide independent experimental evidence in vivo for the translation of 12 sORFs (annotated and novel) using epitope tagging and western blotting, underlining the validity of our identification scheme. Several novel sORFs are conserved in Haloferax species and might have important functions. Based on our findings, we conclude that the small proteome of H. volcanii is larger than previously appreciated, and that combining MS with Ribo-seq is a powerful approach for the discovery of novel small protein coding genes in archaea.

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