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Nutrient withdrawal rescues growth factor-deprived cells from mTOR-dependent damage

机译:营养撤离可从中拯救生长因子剥夺的细胞 mTOR依赖性损害

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摘要

Deregulated nutrient signaling plays pivotal roles in body ageing and in diabetic complications; biochemical cascades linking energy dysmetabolism to cell damage and loss are still incompletely clarified, and novel molecular paradigms and pharmacological targets critically needed. We provide evidence that in the retrovirus-packaging cell line HEK293-T Phoenix, massive cell death in serum-free medium is remarkably prevented or attenuated by either glucose or aminoacid withdrawal, and by the glycolysis inhibitor 2-deoxy-glucose. A similar protection was also elicited by interference with mitochondrial function, clearly suggesting involvement of energy metabolism in increased cell survival. Oxidative stress did not account for nutrient toxicity on serum-starved cells. Instead, nutrient restriction was associated with reduced activity of the mTOR/S6 Kinase cascade. Moreover, pharmacological and genetic manipulation of the mTOR pathway modulated in an opposite fashion signaling to S6K/S6 and cell viability in nutrient-repleted medium. Additionally, stimulation of the AMP-activated Protein Kinase concomitantly inhibited mTOR signaling and cell death, while neither event was affected by overexpression of the NAD+ dependent deacetylase Sirt-1, another cellular sensor of nutrient scarcity. Finally, blockade of the mTOR cascade reduced hyperglycemic damage also in a more pathophysiologically relevant model, i.e. in human umbilical vein endothelial cells (HUVEC) exposed to hyperglycemia. Taken together these findings point to a key role of the mTOR/S6K cascade in cell damage by excess nutrients and scarcity of growth-factors, a condition shared by diabetes and other ageing-related pathologies.
机译:营养信号的失调在机体衰老和糖尿病并发症中起关键作用。仍未完全阐明将能量代谢不良与细胞损伤和损失联系在一起的生化级联反应,因此迫切需要新的分子范例和药理学靶标。我们提供的证据表明,在包装逆转录病毒的细胞系HEK293-T Phoenix中,葡萄糖或氨基酸撤离以及糖酵解抑制剂2-脱氧葡萄糖可显着防止或减轻无血清培养基中的大量细胞死亡。线粒体功能的干扰也引起了类似的保护作用,明确表明能量代谢参与了细胞存活率的提高。氧化应激不能解释营养不足对血清饥饿细胞的毒性。相反,营养限制与mTOR / S6激酶级联反应活性降低有关。此外,mTOR途径的药理和遗传操作以相反的方式调节,向营养素重复培养基中的S6K / S6和细胞活力发出信号。此外,刺激AMP激活 蛋白激酶同时抑制mTOR信号传导和细胞死亡,而 这两个事件都不受NAD +依赖的过表达的影响 脱乙酰基酶Sirt-1,另一种营养缺乏的细胞传感器。最后, 阻断mTOR级联还降低了高血糖损害 病理生理相关模型,即在人脐静脉中 内皮细胞(HUVEC)暴露于高血糖症。这些合计 研究结果表明mTOR / S6K级联在细胞损伤中的关键作用 营养过剩和生长因子稀缺 糖尿病和其他与衰老相关的病理。

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