Peng Xu, Yimeng Kong, Nicholette D. Palmer, Maggie C. Y. Ng, Bin Zhang, Swapan K. Das
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引用次数: 0
摘要
衰老会严重影响葡萄糖反应组织的细胞活性和新陈代谢,但目前还缺乏对衰老的影响和相关细胞类型反应的全面评估。本研究整合了转录组、甲基组、单细胞 RNA 测序和代谢组数据,研究脂肪组织和肌肉组织中与衰老相关的调控。通过对脂肪组织的共表达网络分析,我们发现了特定细胞类型(包括脂肪细胞和免疫细胞)的衰老相关网络模块。衰老会上调溶酶体的代谢功能,下调支链氨基酸(BCAAs)降解途径。此外,在脂肪组织中观察到了与衰老相关的细胞比例、甲基化图谱和单细胞表达的变化。在肌肉组织中,研究发现衰老抑制了糖酵解和氧化磷酸化的代谢过程,同时降低了快速牵引 II 型肌纤维的基因活性。代谢组学分析将血浆代谢物中与衰老相关的改变与葡萄糖反应组织中的基因表达联系起来,特别是在tRNA修饰、BCAA代谢和性激素信号转导方面。我们的多组学分析全面了解了衰老对葡萄糖反应组织的影响,并确定了这些影响的潜在血浆生物标志物。
Integrated multi-omic analyses uncover the effects of aging on cell-type regulation in glucose-responsive tissues
Aging significantly influences cellular activity and metabolism in glucose-responsive tissues, yet a comprehensive evaluation of the impacts of aging and associated cell-type responses has been lacking. This study integrates transcriptomic, methylomic, single-cell RNA sequencing, and metabolomic data to investigate aging-related regulations in adipose and muscle tissues. Through coexpression network analysis of the adipose tissue, we identified aging-associated network modules specific to certain cell types, including adipocytes and immune cells. Aging upregulates the metabolic functions of lysosomes and downregulates the branched-chain amino acids (BCAAs) degradation pathway. Additionally, aging-associated changes in cell proportions, methylation profiles, and single-cell expressions were observed in the adipose. In the muscle tissue, aging was found to repress the metabolic processes of glycolysis and oxidative phosphorylation, along with reduced gene activity of fast-twitch type II muscle fibers. Metabolomic profiling linked aging-related alterations in plasma metabolites to gene expression in glucose-responsive tissues, particularly in tRNA modifications, BCAA metabolism, and sex hormone signaling. Together, our multi-omic analyses provide a comprehensive understanding of the impacts of aging on glucose-responsive tissues and identify potential plasma biomarkers for these effects.
期刊介绍:
Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.