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Genetic sleep deprivation: using sleep mutants to study sleep functions

机译:遗传睡眠剥夺:使用睡眠突变体研究睡眠功能

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摘要

Sleep is a fundamental conserved physiological state in animals and humans. It may serve multiple functions, ranging from energy conservation to higher brain operation. Understanding sleep functions and the underlying mechanisms requires the study of sleeplessness and its consequences. The traditional approach to remove sleep is sleep deprivation (SD) by sensory stimulation. However, stimulation-induced SD can be stressful and can cause non-specific side effects. An emerging alternative method is "genetic SD", which removes sleep using genetics or optogenetics. Sleep requires sleep-active neurons and their regulators. Thus, genetic impairment of sleep circuits might lead to more specific and comprehensive sleep loss. Here, I discuss the advantages and limits of genetic SD in key genetic sleep model animals: rodents, zebrafish, fruit flies and roundworms, and how the study of genetic SD alters our view of sleep functions. Genetic SD typically causes less severe phenotypes compared with stimulation-induced SD, suggesting that sensory stimulation-induced SD may have overestimated the role of sleep, calling for a re-investigation of sleep functions.
机译:睡眠是动物和人类的基本保守的生理状态。它可以提供多种功能,从节能到更高的大脑操作。了解睡眠功能和潜在机制需要研究失眠及其后果。传统的去除睡眠方法是感觉刺激的睡眠剥夺(SD)。然而,刺激诱导的SD可以压力并且可能导致非特异性副作用。新兴的替代方法是“遗传SD”,其使用遗传学或邻戈测雷斯去除睡眠。睡眠需要睡眠活跃的神经元及其监管机构。因此,睡眠电路的遗传损害可能导致更具体和全面的睡眠损失。在这里,我讨论了关键遗传睡眠模型动物遗传SD的优缺点:啮齿动物,斑马鱼,果蝇和蛔虫,以及遗传SD的研究如何改变我们对睡眠功能的看法。与刺激诱导的SD相比,遗传SD通常会导致更严重的表型,表明感觉刺激诱导的SD可能已经高估了睡眠的作用,呼吁重新调查睡眠功能。

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