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与……中生殖调节衰老相关的代谢组学特征 。(原文句子不完整,翻译可能不太准确,你可补充完整原文以便更精准翻译)

Metabolomic signature associated with reproduction-regulated aging in .

作者信息

Wan Qin-Li, Shi Xiaohuo, Liu Jiangxin, Ding Ai-Jun, Pu Yuan-Zhu, Li Zhigang, Wu Gui-Sheng, Luo Huai-Rong

机构信息

State Key Laboratory of Phytochemistry and Plant Resources in West China, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan 650201, China.

University of Chinese Academy of Sciences, Beijing 100039, China.

出版信息

Aging (Albany NY). 2017 Feb 6;9(2):447-474. doi: 10.18632/aging.101170.

Abstract

In , ablation of germline stem cells (GSCs) leads to infertility, which extends lifespan. It has been reported that aging and reproduction are both inextricably associated with metabolism. However, few studies have investigated the roles of polar small molecules metabolism in regulating longevity by reproduction. In this work, we combined the nuclear magnetic resonance (NMR) and ultra-performance liquid chromatography-mass spectrometry (UPLC-MS) to profile the water-soluble metabolome in . Comparing the metabolic fingerprint between two physiological ages among different mutants, our results demonstrate that aging is characterized by metabolome remodeling and metabolic decline. In addition, by analyzing the metabolic profiles of long-lived germline-less mutants, we discovered that mutants regulate the levels of many age-variant metabolites to attenuate aging, including elevated concentrations of the pyrimidine and purine metabolism intermediates and decreased concentrations of the citric acid cycle intermediates. Interestingly, by analyzing the metabolome of double mutants, our results revealed that some metabolic exchange contributing to germline-mediated longevity was mediated by transcription factor FOXO/DAF-16, including pyrimidine metabolism and the TCA cycle. Based on a comprehensive metabolic analysis, we provide novel insight into the relationship between longevity and metabolism regulated by germline signals in .

摘要

在[具体物种]中,生殖系干细胞(GSCs)的消融会导致不育,从而延长寿命。据报道,衰老和繁殖都与新陈代谢有着千丝万缕的联系。然而,很少有研究调查极性小分子代谢在通过繁殖调节寿命方面的作用。在这项工作中,我们结合核磁共振(NMR)和超高效液相色谱 - 质谱联用(UPLC - MS)来分析[具体物种]中的水溶性代谢组。通过比较不同突变体中两个生理年龄之间的代谢指纹图谱,我们的结果表明衰老的特征是代谢组重塑和代谢衰退。此外,通过分析长寿的无生殖系突变体的代谢谱,我们发现[具体物种]突变体通过调节许多随年龄变化的代谢物水平来减缓衰老,包括嘧啶和嘌呤代谢中间体浓度升高以及柠檬酸循环中间体浓度降低。有趣的是,通过分析[具体物种]双突变体的代谢组,我们的结果表明,一些有助于生殖系介导的长寿的代谢交换是由转录因子FOXO/DAF - 16介导的,包括嘧啶代谢和三羧酸循环。基于全面的代谢分析,我们为[具体物种]中生殖系信号调节的寿命与代谢之间的关系提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecc0/5361674/7256de360bdb/aging-09-447-g002.jpg

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