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Hormesis enables cells to handle accumulating toxic metabolites during increased energy flux

机译:增效作用使细胞能够在能量通量增加的情况下处理累积的有毒代谢物

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摘要

Energy production is inevitably linked to the generation of toxic metabolites, such as reactive oxygen and carbonyl species, known as major contributors to ageing and degenerative diseases. It remains unclear how cells can adapt to elevated energy flux accompanied by accumulating harmful by-products without taking any damage. Therefore, effects of a sudden rise in glucose concentrations were studied in yeast cells. This revealed a feedback mechanism initiated by the reactive dicarbonyl methylglyoxal, which is formed non-enzymatically during glycolysis. Low levels of methylglyoxal activate a multi-layered defence response against toxic metabolites composed of prevention, detoxification and damage remission. The latter is mediated by the protein quality control system and requires inducible Hsp70 and Btn2, the aggregase that sequesters misfolded proteins. This glycohormetic mechanism enables cells to pre-adapt to rising energy flux and directly links metabolic to proteotoxic stress. Further data suggest the existence of a similar response in endothelial cells.
机译:能源生产不可避免地与毒性代谢产物的产生有关,例如活性氧和羰基物质,这些物质被认为是导致衰老和退化性疾病的主要因素。尚不清楚细胞如何适应增加的能量通量,同时积累有害的副产物而不造成任何损害。因此,在酵母细胞中研究了葡萄糖浓度突然升高的影响。这揭示了由反应性二羰基甲基乙二醛引发的反馈机制,该反应是在糖酵解过程中非酶促形成的。低水平的甲基乙二醛会激活针对有毒代谢物的多层防御反应,这些代谢物包括预防,排毒和伤害减轻。后者是由蛋白质质量控​​制系统介导的,并需要可诱导的Hsp70和Btn2,这是螯合错误折叠蛋白质的聚集酶。这种糖激素机制使细胞能够预先适应不断增加的能量通量,并将代谢与蛋白毒性应激直接联系起来。进一步的数据表明内皮细胞中存在类似的反应。

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