GénoPsy, Reference Center for Diagnosis and Management of Genetic Psychiatric Disorders, Centre Hospitalier le Vinatier and EDR-Psy Q19 Team (Centre National de la Recherche Scientifique & Lyon 1 Claude Bernard University), 69678 Bron, France.
Laboratoire d'hormonologie-CBPE, CHU de Lyon, 59, boulevard Pinel, 69677 Bron, France.
Int J Mol Sci. 2019 Jul 19;20(14):3533. doi: 10.3390/ijms20143533.
Smith-Magenis syndrome (SMS), linked to () haploinsufficiency, is a unique model of the inversion of circadian melatonin secretion. In this regard, this model is a formidable approach to better understand circadian melatonin secretion cycle disorders and the role of the gene in this cycle. Sleep-wake cycle disorders in SMS include sleep maintenance disorders with a phase advance and intense sleepiness around noon. These disorders have been linked to a general disturbance of sleep-wake rhythm and coexist with inverted secretion of melatonin. The exact mechanism underlying the inversion of circadian melatonin secretion in SMS has rarely been discussed. We suggest three hypotheses that could account for the inversion of circadian melatonin secretion and discuss them. First, inversion of the circadian melatonin secretion rhythm could be linked to alterations in light signal transduction. Second, this inversion could imply global misalignment of the circadian system. Third, the inversion is not linked to a global circadian clock shift but rather to a specific impairment in the melatonin secretion pathway between the suprachiasmatic nuclei (SCN) and pinealocytes. The development of diurnal SMS animal models that produce melatonin appears to be an indispensable step to further understand the molecular basis of the circadian melatonin secretion rhythm.
史密斯-马根尼斯综合征(SMS)与 () 单倍体不足有关,是昼夜节律褪黑素分泌反转的独特模型。在这方面,该模型是更好地理解昼夜节律褪黑素分泌周期紊乱和 基因在该周期中作用的有力方法。SMS 中的睡眠-觉醒周期障碍包括睡眠维持障碍伴相位提前和中午时分强烈嗜睡。这些障碍与睡眠-觉醒节律的普遍紊乱有关,并与褪黑素分泌的反转同时存在。SMS 中昼夜节律褪黑素分泌反转的确切机制很少被讨论。我们提出了三个可以解释昼夜节律褪黑素分泌反转的假设,并对它们进行了讨论。首先,昼夜节律褪黑素分泌节律的反转可能与光信号转导的改变有关。其次,这种反转可能意味着昼夜节律系统的全局失准。第三,反转与全局昼夜节律时钟移位无关,而是与视交叉上核 (SCN) 和松果体细胞之间的褪黑素分泌途径的特定损伤有关。产生褪黑素的昼夜 SMS 动物模型的开发似乎是进一步理解昼夜节律褪黑素分泌节律分子基础的不可或缺步骤。