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首页> 外文期刊>FEBS Letters >Revealing the metabolic characteristics of human embryonic stem cells by genome‐scale metabolic modeling
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Revealing the metabolic characteristics of human embryonic stem cells by genome‐scale metabolic modeling

机译:通过基因组尺度的代谢建模揭示人类胚胎干细胞的代谢特征

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摘要

Embryonic stem cells (ESCs) are characterized by a dual capacity, self‐renewal and pluripotency, which can be regulated by metabolism. A better understanding of ESC metabolism and regulatory mechanisms is pivotal for research into development, ageing, and cancer treatment. However, a systematic and comprehensive delineation of human ESC metabolism is still lacking. Here, we reconstructed the first genome‐scale metabolic model (GEM) of human ESCs (hESCs). By GEM simulation and analyses, hESC global metabolic characteristics including essential metabolites and network motifs were identified. Potential metabolic subsystems responsible for self‐renewal and pluripotency were also identified by analyses and experiments. This first GEM of hESCs provides a novel view and resource for stem cell metabolism research and will contribute to the elucidation of their metabolic characteristics.
机译:胚胎干细胞(ESC)具有双重能力,自我更新和多能性的特点,可以通过代谢来调节。对ESC代谢和调节机制的更好理解对于研究发育,衰老和癌症治疗至关重要。然而,仍然缺乏对人类ESC代谢的系统和全面的描述。在这里,我们重建了人类ESC(hESC)的第一个基因组规模代谢模型(GEM)。通过GEM模拟和分析,鉴定出hESC的整体代谢特征,包括必需的代谢产物和网络基序。还通过分析和实验确定了负责自我更新和多能性的潜在代谢子系统。 hESCs的第一个GEM为干细胞代谢研究提供了新颖的观点和资源,并将有助于阐明其代谢特征。

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