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Genes underlying delayed puberty

机译:基因潜在延迟青春期

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The genetic control of pubertal timing has been a field of active investigation for the last decade, but remains a fascinating and mysterious conundrum. Self-limited delayed puberty (DP), also known as constitutional delay of growth and puberty, represents the extreme end of normal pubertal timing, and is the commonest cause of DP in both boys and girls. Familial self-limited DP has a clear genetic basis. It is a highly heritable condition, which often segregates in an autosomal dominant pattern (with or without complete penetrance) in the majority of families. However, the underlying neuroendocrine pathophysiology and genetic regulation has been largely unknown. Very recently novel gene discoveries from next generation sequencing studies have provided insights into the genetic mutations that lead to familial DP. Further understanding has come from sequencing genes known to cause GnRH deficiency, next generation sequencing studies in patients with early puberty, and from large-scale genome wide association studies in the general population. Results of these studies suggest that the genetic basis of DP is likely to be highly heterogeneous. Abnormalities of GnRH neuronal development, function, and its downstream pathways, metabolic and energy homeostatic derangements, and transcriptional regulation of the hypothalamic-pituitary-gonadal axis may all lead to DP. This variety of different pathogenic mechanisms affecting the release of the puberty 'brake' may take place in several age windows between fetal life and puberty.
机译:青春期时间的遗传控制是过去十年积极调查的领域,但仍然是一个令人迷人和神秘的难题。自我限制的延迟青春期(DP),也称为宪法延迟的生长和青春期,代表正常蓬蓬时期的极端结束,是男孩和女孩中DP的最常见原因。家族性自我限制DP具有明显的遗传基础。这是一种高度遗传的病情,其常常在大多数家庭中以常染色体主导模式(有或没有完全渗透)进行隔离。然而,潜在的神经内分泌病理生理和遗传调节基本上是未知的。来自下一代测序研究的最近新的基因发现已经为导致家族性DP的基因突变提供了见解。进一步了解众所周知的测序基因,导致GNRH缺乏,早期青春期患者的下一代测序研究,以及来自一般人群的大规模基因组共期研究。这些研究的结果表明DP的遗传基础可能是高度异质的。 GNRH神经元发育,功能及其下游途径,代谢和能量稳态的异常,以及下丘脑 - 垂体性腺轴的转录调节都可能导致DP。这种不同的致病机制,影响青春期“制动器”的释放可能发生在胎儿生命和青春期之间的几个窗户中。

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