Biology Department, Purdue University, West Lafayette, IN, USA.
J Gerontol A Biol Sci Med Sci. 2013 Apr;68(4):368-70. doi: 10.1093/gerona/gls184. Epub 2012 Oct 2.
For more than 20 years, the observation that impermeable oxidants can stimulate cell growth has not been satisfactorily explained. The discovery of sirtuins provides a logical answer to the puzzle. The NADH-dependent transplasma membrane electron transport system, which is stimulated by growth factors and interventions such as calorie restriction, can transfer electrons to external acceptors and protect against stress-induced apoptosis. We hypothesize that the activation of plasma membrane electron transport contributes to the cytosolic NAD(+) pool required for sirtuin to activate transcription factors necessary for cell growth and survival.
二十多年来,人们一直无法对不可渗透的氧化剂能够刺激细胞生长这一现象做出满意的解释。sirtuins 的发现为这个谜题提供了一个合乎逻辑的答案。NADH 依赖性跨膜电子传递系统受生长因子和卡路里限制等干预的刺激,可以将电子转移到外部受体,从而防止应激诱导的细胞凋亡。我们假设,质膜电子传递的激活有助于细胞质 NAD(+)池的形成,这是 sirtuins 激活细胞生长和存活所必需的转录因子所必需的。