Rewiring of Uric Acid Metabolism in the Intestine Promotes High-Altitude Hypoxia Adaptation in Humans.

IF 11 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Qian Su, Yu-Chun Li, Dao-Hua Zhuang, Xin-Yuan Liu, Han Gao, Dong Li, Yu Chen, Ming-Xia Ge, Yi-Ming Han, Zong-Liang Gao, Fan-Qian Yin, Long Zhao, Yun-Xia Zhang, Li-Qin Yang, Qin Zhao, Yong-Jun Luo, Zhigang Zhang, Qing-Peng Kong
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Abstract

Adaptation to high-altitude hypoxia is characterized by systemic and organ-specific metabolic changes. This study investigates whether intestinal metabolic rewiring is a contributing factor to hypoxia adaptation. We conducted a longitudinal analysis over 108 days, with seven time points, examining fecal metabolomic data from a cohort of 46 healthy male adults traveling from Chongqing (a.s.l. 243 m) to Lhasa (a.s.l. 3,658 m) and back. Our findings reveal that short-term hypoxia exposure significantly alters intestinal metabolic pathways, particularly those involving purines, pyrimidines, and amino acids. A notable observation was the significantly reduced level of intestinal uric acid, the end product of purine metabolism, during acclimatization (also called acclimation) and additional two long-term exposed cohorts (Han Chinese and Tibetans) residing in Shigatse, Xizang (a.s.l. 4,700 m), suggesting that low intestinal uric acid levels facilitate adaptation to high-altitude hypoxia. Integrative analyses with gut metagenomic data showed consistent trends in intestinal uric acid levels and the abundance of key uric acid-degrading bacteria, predominantly from the Lachnospiraceae family. The sustained high abundance of these bacteria in the long-term resident cohorts underscores their essential role in maintaining low intestinal uric acid levels. Collectively, these findings suggest that the rewiring of intestinal uric acid metabolism, potentially orchestrated by gut bacteria, is crucial for enhancing human resilience and adaptability in extreme environments.

肠道中尿酸代谢的重新布线促进了人类对高海拔缺氧的适应。
对高海拔缺氧的适应以全身和器官特异性代谢变化为特征。本研究探讨了肠道代谢重构是否是缺氧适应的一个促成因素。我们对从重庆(海拔 243 米)到拉萨(海拔 3658 米)往返的 46 名健康男性成年人的粪便代谢组学数据进行了为期 108 天、共 7 个时间点的纵向分析。我们的研究结果表明,短期缺氧会显著改变肠道代谢途径,尤其是涉及嘌呤、嘧啶和氨基酸的代谢途径。一个值得注意的观察结果是,嘌呤代谢的最终产物--肠道尿酸(UA)水平在适应期(也称 "驯化期")和居住在西藏日喀则(海拔4700米)的另外两个长期暴露人群(汉族和藏族)中明显降低,这表明肠道UA水平低有助于适应高海拔缺氧环境。对肠道元基因组数据的综合分析表明,肠道 UA 含量和主要 UA 降解菌(主要来自 Lachnospiraceae 家族)的丰度呈一致趋势。这些细菌在长期居民队列中的持续高丰度强调了它们在维持肠道低UA水平中的重要作用。总之,这些研究结果表明,可能由肠道细菌协调的肠道 UA 代谢重构对提高人类在极端环境中的恢复力和适应力至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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