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一种社区支持的宏蛋白质组学管道,用于提高热液喷口微生物群中的肽鉴定。

A community-supported metaproteomic pipeline for improving peptide identifications in hydrothermal vent microbiota.

机构信息

School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

School of Oceanography, Shanghai Jiao Tong University, Shanghai, China.

出版信息

Brief Bioinform. 2021 Sep 2;22(5). doi: 10.1093/bib/bbab052.

Abstract

Microorganisms in deep-sea hydrothermal vents provide valuable insights into life under extreme conditions. Mass spectrometry-based proteomics has been widely used to identify protein expression and function. However, the metaproteomic studies in deep-sea microbiota have been constrained largely by the low identification rates of protein or peptide. To improve the efficiency of metaproteomics for hydrothermal vent microbiota, we firstly constructed a microbial gene database (HVentDB) based on 117 public metagenomic samples from hydrothermal vents and proposed a metaproteomic analysis strategy, which takes the advantages of not only the sample-matched metagenome, but also the metagenomic information released publicly in the community of hydrothermal vents. A two-stage false discovery rate method was followed up to control the risk of false positive. By applying our community-supported strategy to a hydrothermal vent sediment sample, about twice as many peptides were identified when compared with the ways against the sample-matched metagenome or the public reference database. In addition, more enriched and explainable taxonomic and functional profiles were detected by the HVentDB-based approach exclusively, as well as many important proteins involved in methane, amino acid, sugar, glycan metabolism and DNA repair, etc. The new metaproteomic analysis strategy will enhance our understanding of microbiota, including their lifestyles and metabolic capabilities in extreme environments. The database HVentDB is freely accessible from http://lilab.life.sjtu.edu.cn:8080/HventDB/main.html.

摘要

深海热液喷口的微生物为了解极端条件下的生命提供了有价值的见解。基于质谱的蛋白质组学已广泛用于鉴定蛋白质表达和功能。然而,深海微生物组的宏蛋白质组学研究在很大程度上受到蛋白质或肽鉴定率低的限制。为了提高热液喷口微生物宏蛋白质组学的效率,我们首先基于 117 个来自热液喷口的公共宏基因组样本构建了一个微生物基因数据库(HVentDB),并提出了一种宏蛋白质组学分析策略,该策略不仅利用了样本匹配的宏基因组,还利用了在热液喷口社区中公开发布的宏基因组信息。采用两阶段错误发现率方法来控制假阳性风险。通过将我们的社区支持策略应用于热液喷口沉积物样本,与针对样本匹配的宏基因组或公共参考数据库相比,鉴定出的肽数量增加了约两倍。此外,仅通过基于 HventDB 的方法就可以检测到更丰富和可解释的分类和功能谱,以及许多涉及甲烷、氨基酸、糖、聚糖代谢和 DNA 修复等的重要蛋白质。新的宏蛋白质组学分析策略将增强我们对微生物组的理解,包括它们在极端环境中的生活方式和代谢能力。数据库 HventDB 可从 http://lilab.life.sjtu.edu.cn:8080/HventDB/main.html 免费获取。

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