通过揭示代谢组学网络的连通性,研究代谢物的广播者、接收者、功能组以及与心力衰竭的联系。

IF 3.5 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Azam Yazdani, Raul Mendez-Giraldez, Akram Yazdani, Rui-Sheng Wang, Daniel J Schaid, Sek Won Kong, M Reza Hadi, Ahmad Samiei, Esmat Samiei, Clemens Wittenbecher, Jessica Lasky-Su, Clary B Clish, Jochen D Muehlschlegel, Francesco Marotta, Joseph Loscalzo, Samia Mora, Daniel I Chasman, Martin G Larson, Sarah H Elsea
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引用次数: 0

摘要

背景和目的:以血液为基础的小分子代谢物易于获取,在深入了解健康过程、生活方式的影响以及遗传变异对疾病的影响方面具有巨大潜力,可实现精确的风险预防。在一项有心力衰竭(HF)发病率记录的前瞻性研究中,我们展示了基线时无心力衰竭的个体的代谢物分析数据:方法:我们利用数据驱动和多基因因素增强的因果网络揭示了代谢物之间的相互联系。通过探索这些网络,我们确定了代谢物的广播者、接收者、调解者以及与代谢物功能类别相对应的子网络,并深入了解了代谢组学结构与健康调控之间的联系。我们在确定与高频相关的代谢物时纳入了网络结构,以控制混杂代谢物的影响:结果:我们发现了与心房颤动发病风险高低相关的代谢物,如甘氨酸、尿苷丙酸和甘胆酸以及 LPC 18:2。由于揭示了代谢物之间的关联性,并对每种关联性进行了调整,因此这些关联性没有受到其他代谢物的干扰。我们的发现包括天冬酰胺对甘氨酸的直接影响,这两种代谢物都与高血脂成反比关系。这两种代谢物受多基因因素的影响,而仅受必需氨基酸的影响:代谢物在将遗传背景和生活方式因素与高血压发病率联系起来方面可能起着关键作用。揭示与高血脂相关的代谢物的内在联系可加强研究结果,并有助于研究高血脂等复杂疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Broadcasters, receivers, functional groups of metabolites, and the link to heart failure by revealing metabolomic network connectivity.

Broadcasters, receivers, functional groups of metabolites, and the link to heart failure by revealing metabolomic network connectivity.

Background and objective: Blood-based small molecule metabolites offer easy accessibility and hold significant potential for insights into health processes, the impact of lifestyle, and genetic variation on disease, enabling precise risk prevention. In a prospective study with records of heart failure (HF) incidence, we present metabolite profiling data from individuals without HF at baseline.

Methods: We uncovered the interconnectivity of metabolites using data-driven and causal networks augmented with polygenic factors. Exploring the networks, we identified metabolite broadcasters, receivers, mediators, and subnetworks corresponding to functional classes of metabolites, and provided insights into the link between metabolomic architecture and regulation in health. We incorporated the network structure into the identification of metabolites associated with HF to control the effect of confounding metabolites.

Results: We identified metabolites associated with higher and lower risk of HF incidence, such as glycine, ureidopropionic and glycocholic acids, and LPC 18:2. These associations were not confounded by the other metabolites due to uncovering the connectivity among metabolites and adjusting each association for the confounding metabolites. Examples of our findings include the direct influence of asparagine on glycine, both of which were inversely associated with HF. These two metabolites were influenced by polygenic factors and only essential amino acids, which are not synthesized in the human body and are obtained directly from the diet.

Conclusion: Metabolites may play a critical role in linking genetic background and lifestyle factors to HF incidence. Revealing the underlying connectivity of metabolites associated with HF strengthens the findings and facilitates studying complex conditions like HF.

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来源期刊
Metabolomics
Metabolomics 医学-内分泌学与代谢
CiteScore
6.60
自引率
2.80%
发文量
84
审稿时长
2 months
期刊介绍: Metabolomics publishes current research regarding the development of technology platforms for metabolomics. This includes, but is not limited to: metabolomic applications within man, including pre-clinical and clinical pharmacometabolomics for precision medicine metabolic profiling and fingerprinting metabolite target analysis metabolomic applications within animals, plants and microbes transcriptomics and proteomics in systems biology Metabolomics is an indispensable platform for researchers using new post-genomics approaches, to discover networks and interactions between metabolites, pharmaceuticals, SNPs, proteins and more. Its articles go beyond the genome and metabolome, by including original clinical study material together with big data from new emerging technologies.
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