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衰老的人类成纤维细胞表现出糖酵解增加和氧化还原稳态,其细胞外代谢组与不可修复的DNA损伤、衰老和疾病的代谢组重叠。

Senescent human fibroblasts show increased glycolysis and redox homeostasis with extracellular metabolomes that overlap with those of irreparable DNA damage, aging, and disease.

作者信息

James Emma L, Michalek Ryan D, Pitiyage Gayani N, de Castro Alice M, Vignola Katie S, Jones Janice, Mohney Robert P, Karoly Edward D, Prime Stephen S, Parkinson Eric Kenneth

机构信息

‡Metabolon, Inc., 617 Davis Drive, Suite 400, Durham, North Carolina 27713, United States.

出版信息

J Proteome Res. 2015 Apr 3;14(4):1854-71. doi: 10.1021/pr501221g. Epub 2015 Feb 26.

DOI:10.1021/pr501221g
PMID:25690941
Abstract

Cellular senescence can modulate various pathologies and is associated with irreparable DNA double-strand breaks (IrrDSBs). Extracellular senescence metabolomes (ESMs) were generated from fibroblasts rendered senescent by proliferative exhaustion (PEsen) or 20 Gy of γ rays (IrrDSBsen) and compared with those of young proliferating cells, confluent cells, quiescent cells, and cells exposed to repairable levels of DNA damage to identify novel noninvasive markers of senescent cells. ESMs of PEsen and IrrDSBsen overlapped and showed increased levels of citrate, molecules involved in oxidative stress, a sterol, monohydroxylipids, tryptophan metabolism, phospholipid, and nucleotide catabolism, as well as reduced levels of dipeptides containing branched chain amino acids. The ESM overlaps with the aging and disease body fluid metabolomes, supporting their utility in the noninvasive detection of human senescent cells in vivo and by implication the detection of a variety of human pathologies. Intracellular metabolites of senescent cells showed a relative increase in glycolysis, gluconeogenesis, the pentose-phosphate pathway, and, consistent with this, pyruvate dehydrogenase kinase transcripts. In contrast, tricarboxylic acid cycle enzyme transcript levels were unchanged and their metabolites were depleted. These results are surprising because glycolysis antagonizes senescence entry but are consistent with established senescent cells entering a state of low oxidative stress.

摘要

细胞衰老可调节多种病理过程,并与不可修复的DNA双链断裂(IrrDSBs)相关。通过增殖耗竭(PEsen)或20 Gy的γ射线(IrrDSBsen)诱导成纤维细胞衰老,从而产生细胞外衰老代谢组(ESMs),并将其与年轻增殖细胞、汇合细胞、静止细胞以及暴露于可修复水平DNA损伤的细胞的代谢组进行比较,以鉴定衰老细胞的新型非侵入性标志物。PEsen和IrrDSBsen的ESMs存在重叠,且柠檬酸、参与氧化应激的分子、一种固醇、单羟基脂质、色氨酸代谢、磷脂和核苷酸分解代谢的水平升高,而含支链氨基酸的二肽水平降低。ESMs与衰老和疾病体液代谢组重叠,支持其在体内非侵入性检测人类衰老细胞以及由此检测多种人类病理状况中的应用。衰老细胞的细胞内代谢物显示糖酵解、糖异生、磷酸戊糖途径相对增加,与此一致的是丙酮酸脱氢酶激酶转录本也增加。相比之下,三羧酸循环酶转录水平未变,其代谢物减少。这些结果令人惊讶,因为糖酵解会拮抗衰老的进入,但与已建立的衰老细胞进入低氧化应激状态是一致的。

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