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半酶切肽中心的宏蛋白质组学挖掘方法及其在捕获肠道微生物蛋白水解特征中的潜在应用。

A semi-tryptic peptide centric metaproteomic mining approach and its potential utility in capturing signatures of gut microbial proteolysis.

机构信息

Guangdong Provincial Key Laboratory of Biomedical Imaging and Guangdong Provincial Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital, Sun Yat-sen University, Zhuhai, 519000, Guangdong Province, China.

Department of Endocrinology and Metabolism, The Fifth Affiliated Hospital, Sun Yat-sen University, Zhuhai, 519000, Guangdong Province, China.

出版信息

Microbiome. 2021 Jan 12;9(1):12. doi: 10.1186/s40168-020-00967-x.

Abstract

BACKGROUND

Proteolysis regulation allows gut microbes to respond rapidly to dynamic intestinal environments by fast degradation of misfolded proteins and activation of regulatory proteins. However, alterations of gut microbial proteolytic signatures under complex disease status such as inflammatory bowel disease (IBD, including Crohn's disease (CD) and ulcerative colitis (UC)), have not been investigated. Metaproteomics holds the potential to investigate gut microbial proteolysis because semi-tryptic peptides mainly derive from endogenous proteolysis.

RESULTS

We have developed a semi-tryptic peptide centric metaproteomic mining approach to obtain a snapshot of human gut microbial proteolysis signatures. This approach employed a comprehensive meta-database, two-step multiengine database search, and datasets with high-resolution fragmentation spectra to increase the confidence of semi-tryptic peptide identification. The approach was validated by discovering altered proteolysis signatures of Escherichia coli heat shock response. Utilizing two published large-scale metaproteomics datasets containing 623 metaproteomes from 447 fecal and 176 mucosal luminal interface (MLI) samples from IBD patients and healthy individuals, we obtain potential signatures of altered gut microbial proteolysis at taxonomic, functional, and cleavage site motif levels. The functional alterations mainly involved microbial carbohydrate transport and metabolism, oxidative stress, cell motility, protein synthesis, and maturation. Altered microbial proteolysis signatures of CD and UC mainly occurred in terminal ileum and descending colon, respectively. Microbial proteolysis patterns exhibited low correlations with β-diversity and moderate correlations with microbial protease and chaperones levels, respectively. Human protease inhibitors and immunoglobulins were mainly negatively associated with microbial proteolysis patterns, probably because of the inhibitory effects of these host factors on gut microbial proteolysis events.

CONCLUSIONS

This semi-tryptic peptide centric mining strategy offers a label-free approach to discover signatures of in vivo gut microbial proteolysis events if experimental conditions are well controlled. It can also capture in vitro proteolysis signatures to facilitate the evaluation and optimization of experimental conditions. Our findings highlight the complex and diverse proteolytic events of gut microbiome, providing a unique layer of information beyond taxonomic and proteomic abundance. Video abstract.

摘要

背景

蛋白质水解调控使肠道微生物能够通过快速降解错误折叠的蛋白质和激活调节蛋白,对动态的肠道环境迅速做出反应。然而,在复杂疾病状态下,如炎症性肠病(包括克罗恩病(CD)和溃疡性结肠炎(UC)),肠道微生物的蛋白质水解特征的变化尚未得到研究。代谢蛋白质组学具有研究肠道微生物蛋白质水解的潜力,因为半酶解肽主要来源于内源性蛋白质水解。

结果

我们开发了一种基于半酶解肽的代谢蛋白质组学挖掘方法,以获得人类肠道微生物蛋白质水解特征的快照。该方法采用了一个全面的元数据库、两步多引擎数据库搜索以及具有高分辨率碎裂谱的数据集,以提高半酶解肽鉴定的可信度。该方法通过发现大肠杆菌热休克反应的改变的蛋白质水解特征得到了验证。利用两个已发表的大型代谢蛋白质组学数据集,其中包含来自 IBD 患者和健康个体的 447 份粪便和 176 份黏膜腔界面(MLI)样本的 623 个代谢蛋白质组,我们在分类学、功能和切割位点基序水平上获得了改变的肠道微生物蛋白质水解的潜在特征。功能改变主要涉及微生物碳水化合物运输和代谢、氧化应激、细胞运动、蛋白质合成和成熟。CD 和 UC 的微生物蛋白质水解特征的改变主要发生在末端回肠和降结肠。微生物蛋白质水解模式与 β 多样性的相关性较低,与微生物蛋白酶和伴侣蛋白的相关性适中。人蛋白酶抑制剂和免疫球蛋白主要与微生物蛋白质水解模式呈负相关,这可能是由于这些宿主因素对肠道微生物蛋白质水解事件的抑制作用。

结论

如果实验条件得到很好的控制,这种基于半酶解肽的挖掘策略为发现体内肠道微生物蛋白质水解事件的特征提供了一种无标签的方法。它还可以捕获体外蛋白质水解特征,以促进实验条件的评估和优化。我们的研究结果强调了肠道微生物组复杂多样的蛋白质水解事件,提供了超越分类学和蛋白质组丰度的独特信息层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/752e/7805185/f01e572702f8/40168_2020_967_Fig1_HTML.jpg

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