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绘制用于系统生物学应用的肠道微生物群依赖性三甲胺 N-氧化物超级途径。

Mapping out the gut microbiota-dependent trimethylamine N-oxide super pathway for systems biology applications.

作者信息

Valenbreder Isabel M E, Balăn Sonia, Breuer Marian, Adriaens Michiel E

机构信息

Maastricht Centre for Systems Biology (MaCSBio), Maastricht University, Maastricht, Netherlands.

出版信息

Front Syst Biol. 2023 Mar 8;3:1074749. doi: 10.3389/fsysb.2023.1074749. eCollection 2023.

DOI:10.3389/fsysb.2023.1074749
PMID:40809486
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12342028/
Abstract

The metabolic axis linking the gut microbiome and heart is increasingly being researched in the context of cardiovascular health. The gut microbiota-derived trimethylamine/trimethylamine N-oxide (TMA/TMAO) pathway is responsible along this axis for the bioconversion of dietary precursors into TMA/TMAO and has been implicated in the progression of heart failure and dysbiosis through a positive-feedback interaction. Systems biology approaches in the context of researching this interaction offer an additional dimension for deepening the understanding of metabolism along the gut-heart axis. For instance, genome-scale metabolic models allow to study the functional role of pathways of interest in the context of an entire cellular or even whole-body metabolic network. In this mini review, we provide an overview of the latest findings on the TMA/TMAO super pathway and summarize the current state of knowledge in a curated pathway map on the community platform WikiPathways. The pathway map can serve both as a starting point for continual curation by the community as well as a resource for systems biology modeling studies. This has many applications, including addressing remaining gaps in our understanding of the gut-heart axis. We discuss how the curated pathway can inform a further curation and implementation of the pathway in existing whole-body metabolic models, which will allow researchers to computationally simulate this pathway to further understand its role in cardiovascular metabolism.

摘要

在心血管健康背景下,连接肠道微生物群与心脏的代谢轴正受到越来越多的研究。肠道微生物群衍生的三甲胺/三甲胺N-氧化物(TMA/TMAO)途径在该轴上负责将膳食前体生物转化为TMA/TMAO,并通过正反馈相互作用与心力衰竭和生态失调的进展有关。在研究这种相互作用的背景下,系统生物学方法为深化对肠道-心脏轴代谢的理解提供了一个新的维度。例如,基因组规模的代谢模型能够在整个细胞甚至全身代谢网络的背景下研究感兴趣途径的功能作用。在本综述中,我们概述了TMA/TMAO超级途径的最新发现,并在社区平台WikiPathways上的一个精心策划的途径图中总结了当前的知识状态。该途径图既可以作为社区持续策划的起点,也可以作为系统生物学建模研究的资源。这有许多应用,包括填补我们对肠道-心脏轴理解中存在的空白。我们讨论了精心策划的途径如何为在现有的全身代谢模型中进一步策划和实施该途径提供信息,这将使研究人员能够通过计算模拟该途径,以进一步了解其在心血管代谢中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ad/12342028/27b04041083a/fsysb-03-1074749-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ad/12342028/7308bba320dd/fsysb-03-1074749-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ad/12342028/27b04041083a/fsysb-03-1074749-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ad/12342028/7308bba320dd/fsysb-03-1074749-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ad/12342028/27b04041083a/fsysb-03-1074749-g002.jpg

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本文引用的文献

1
Metabolite Damage and Damage Control in a Minimal Genome.最小基因组中的代谢物损伤与损伤控制
mBio. 2022 Aug 30;13(4):e0163022. doi: 10.1128/mbio.01630-22. Epub 2022 Jul 11.
2
A Computational Framework for Studying Gut-Brain Axis in Autism Spectrum Disorder.一种用于研究自闭症谱系障碍中肠脑轴的计算框架。
Front Physiol. 2022 Mar 7;13:760753. doi: 10.3389/fphys.2022.760753. eCollection 2022.
3
Microbiome and metabolome features of the cardiometabolic disease spectrum.心血管代谢疾病谱的微生物组和代谢组特征。
Nat Med. 2022 Feb;28(2):303-314. doi: 10.1038/s41591-022-01688-4. Epub 2022 Feb 17.
4
Metabolomic and microbiome profiling reveals personalized risk factors for coronary artery disease.代谢组学和微生物组分析揭示冠状动脉疾病的个性化风险因素。
Nat Med. 2022 Feb;28(2):295-302. doi: 10.1038/s41591-022-01686-6. Epub 2022 Feb 17.
5
The microbial gbu gene cluster links cardiovascular disease risk associated with red meat consumption to microbiota L-carnitine catabolism.微生物 gbu 基因簇将与食用红色肉类相关的心血管疾病风险与微生物组 L-肉碱代谢联系起来。
Nat Microbiol. 2022 Jan;7(1):73-86. doi: 10.1038/s41564-021-01010-x. Epub 2021 Dec 23.
6
The reactome pathway knowledgebase 2022.反应体通路知识库2022版。
Nucleic Acids Res. 2022 Jan 7;50(D1):D687-D692. doi: 10.1093/nar/gkab1028.
7
Interplay Between Gut Microbiota and Amino Acid Metabolism in Heart Failure.心力衰竭中肠道微生物群与氨基酸代谢之间的相互作用
Front Cardiovasc Med. 2021 Oct 21;8:752241. doi: 10.3389/fcvm.2021.752241. eCollection 2021.
8
Elucidation of an anaerobic pathway for metabolism of l-carnitine-derived γ-butyrobetaine to trimethylamine in human gut bacteria.阐明人肠道细菌中 l-肉碱衍生的 γ-丁基甜菜碱代谢为三甲胺的厌氧途径。
Proc Natl Acad Sci U S A. 2021 Aug 10;118(32). doi: 10.1073/pnas.2101498118.
9
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Eur J Nutr. 2021 Oct;60(7):3567-3584. doi: 10.1007/s00394-021-02491-6. Epub 2021 Feb 3.
10
Insights in the regulation of trimetylamine N-oxide production using a comparative biomimetic approach suggest a metabolic switch in hibernating bears.利用比较仿生方法研究三甲基胺 N-氧化物产生的调控机制,提示冬眠熊存在代谢转换。
Sci Rep. 2020 Nov 23;10(1):20323. doi: 10.1038/s41598-020-76346-1.