先天性促性腺功能低下:几种复杂神经发育障碍共有的特征。

N. de Roux, J. Carel, J. Léger
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引用次数: 12

摘要

生殖功能取决于促性腺轴的活动,而促性腺轴受下丘脑神经网络控制,其主要功能是调节促性腺激素释放激素(GnRH)的分泌。这个内分泌网络在出生时并不成熟,促性腺激素轴的激活和失活的几个阶段是其正常发育所必需的。出生后GnRH网络的成熟是在一个神经发育程序的控制下进行的,这个程序从胎儿时期开始,到青春期结束。在许多临床情况下,这一程序被中断,导致先天性促性腺功能减退症(CHH)和青春期缺失。多年来,人们的注意力主要集中在分离CHH的遗传学上。最近,新的基因组学技术的出现导致了非常罕见综合征的遗传缺陷的描述,其中CHH与复杂的神经功能障碍有关。在这里,我们回顾临床表型和遗传缺陷相关的综合征CHH。这一分析强调了泛素途径、突触蛋白和CHH之间的密切联系,以及编码核仁蛋白的基因的意外突变。
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Congenital Hypogonadotropic Hypogonadism: A Trait Shared by Several Complex Neurodevelopmental Disorders.
Reproductive function depends on the activity of the gonadotropic axis, which is controlled by a hypothalamic neural network whose main function is to regulate the secretion of gonadotropin-releasing hormone (GnRH). This endocrine network is not mature at birth, and several phases of activation-inactivation of the gonadotropic axis are necessary for its normal development. The postnatal maturation of the GnRH network lies under the control of a neurodevelopmental program that starts in fetal life and ends at puberty. There are many clinical situations in which this program is interrupted, leading to congenital hypogonadotropic hypogonadism (CHH) and an absence of puberty. For many years, attention has mainly been focused on the genetics of isolated CHH. More recently, the emergence of new genomics techniques has led to the description of genetic defects in very rare syndromes in which CHH is associated with complex neurological dysfunctions. Here, we review the clinical phenotype and genetic defects linked to such syndromic CHH. This analysis highlights the close link between the ubiquitin pathway, synaptic proteins and CHH, as well as unexpected mutations in genes encoding nucleolar proteins.
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