Ottawa Institute of Systems Biology and Department of Biochemistry, Microbiology and Immunology, Faculty of Medicine , University of Ottawa , Ottawa , Ontario K1H 8M5 , Canada.
J Proteome Res. 2019 Jun 7;18(6):2370-2380. doi: 10.1021/acs.jproteome.9b00054. Epub 2019 Apr 26.
The microbiome is emerging as a prominent factor affecting human health, and its dysbiosis is associated with various diseases. Compositional profiling of microbiome is increasingly being supplemented with functional characterization. Metaproteomics is intrinsically focused on functional changes and therefore will be an important tool in those studies of the human microbiome. In the past decade, development of new experimental and bioinformatic approaches for metaproteomics has enabled large-scale human metaproteomic studies. However, challenges still exist, and there remains a lack of standardizations and guidelines for properly performing metaproteomic studies on human microbiome. Herein, we provide a perspective of recent developments, the challenges faced, and the future directions of metaproteomics and its applications. In addition, we propose a set of guidelines/recommendations for performing and reporting the results from metaproteomic experiments for the study of human microbiomes. We anticipate that these guidelines will be optimized further as more metaproteomic questions are raised and addressed, and metaproteomic applications are published, so that they are eventually recognized and applied in the field.
微生物组正在成为影响人类健康的一个重要因素,其失调与各种疾病有关。微生物组的组成分析越来越多地与功能特征相结合。代谢组学本质上侧重于功能变化,因此将成为人类微生物组研究的重要工具。在过去的十年中,代谢组学新的实验和生物信息学方法的发展使得大规模的人类代谢组学研究成为可能。然而,挑战仍然存在,并且在对人类微生物组进行适当的代谢组学研究方面仍然缺乏标准化和指导方针。本文提供了对代谢组学及其应用的最新进展、面临的挑战和未来方向的观点。此外,我们还提出了一套针对人类微生物组研究的代谢组学实验的执行和报告结果的指南/建议。我们预计,随着更多的代谢组学问题被提出和解决,以及代谢组学应用的发表,这些指南将进一步得到优化,以便最终在该领域得到认可和应用。