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NAD: A master regulator of transcription

机译:NAD:转录的主要调节剂

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摘要

Cellular processes such as proliferation, differentiation and death are intrinsically dependent upon the redox status of a cell. Among other indicators of redox flux, cellular NAD(H) levels play a predominant role in transcriptional reprogramming. In addition to this, normal physiological functions of a cell are regulated in response to perturbations in NAD(H) levels (for example, due to alterations in diet/metabolism) to maintain homeostatic conditions. Cells achieve this homeostasis by reprogramming various components that include changes in chromatin structure and function (transcription). The interdependence of changes in gene expression and NAD(H) is evolutionarily conserved and is considered crucial for the survival of a species (by affecting reproductive capacity and longevity). Proteins that bind and/or use NAD(H) as a co-substrate (such as, CtBP and PARPs/Sirtuins respectively) are known to induce changes in chromatin structure and transcriptional profiles. In fact, their ability to sense perturbations in NAD(H) levels has been implicated in their roles in development, stress responses, metabolic homeostasis, reproduction and aging or age-related diseases. It is also becoming increasingly clear that both the levels/activities of these proteins and the availability of NAD(H) are equally important. Here we discuss the pivotal role of NAD(H) in controlling the functions of some of these proteins, the functional interplay between them and physiological implications during calorie restriction, energy homeostasis, circadian rhythm and aging.
机译:细胞增殖,分化和死亡等细胞过程本质上取决于细胞的氧化还原状态。在氧化还原通量的其他指标中,细胞NAD(H)水平在转录重编程中起主要作用。除此之外,响应NAD(H)水平的扰动(例如,由于饮食/代谢的改变),调节细胞的正常生理功能,以保持体内稳态。细胞通过重新编程包括染色质结构和功能(转录)变化在内的各种成分来实现这种稳态。基因表达变化和NAD(H)的相互依赖性在进化上是保守的,并且被认为对物种的生存至关重要(通过影响生殖能力和寿命)。结合和/或使用NAD(H)作为共底物的蛋白质(分别为CtBP和PARPs / Sirtuins)可诱导染色质结构和转录谱改变。实际上,它们感知NAD(H)水平干扰的能力与它们在发育,应激反应,代谢稳态,繁殖和衰老或与年龄相关的疾病中的作用有关。这些蛋白质的水平/活性和NAD(H)的可用性均同等重要,这一点也越来越明显。在这里,我们讨论了NAD(H)在控制其中某些蛋白质的功能,它们之间的功能相互作用以及在卡路里限制,能量稳态,昼夜节律和衰老过程中的生理影响之间的关键作用。

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