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首页> 外文期刊>Seminars in pediatric neurology >Joubert Syndrome: Insights Into Brain Development, Cilium Biology, and Complex Disease
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Joubert Syndrome: Insights Into Brain Development, Cilium Biology, and Complex Disease

机译:Joubert综合征:大脑发育,珊瑚生物学和复杂疾病的见解。

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Joubert syndrome (JS) is a primarily autosomal recessive condition characterized by hypotonia, ataxia, abnormal eye movements, and intellectual disability with a distinctive mid-hindbrain malformation (the "molar tooth sign"). Variable features include retinal dystrophy, cystic kidney disease, liver fibrosis and polydactyly. Recently, substantial progress has been made in our understanding of the genetic basis of JS, including identification of seven causal genes (NPHP1, AHI1, CEP290, RPGRIP1L, TMEM67/MKS3, ARL13B and CC2D2A). Despite this progress, the known genes account for <50% of cases and few strong genotype-phenotype correlations exist in JS; however, genetic testing can be prioritized based on clinical features. While all seven JS genes have been implicated in the function of the primary cilium/basal body organelle (PC/BB), little is known about how the PC/BB is required for brain, kidney, retina and liver development/function, nor how disruption of PC/BB function leads to diseases of these organs. Recent work on the function of the PC/BB indicates that the organelle is required for multiple signaling pathways including sonic hedgehog, WNT and platelet derived growth factor. Due to shared clinical features and underlying molecular pathophysiology, JS is included in the rapidly expanding group of disorders called ciliopathies. The ciliopathies are emerging as models for more complex diseases, where sequence variants in multiple genes contribute to the phenotype expressed in any given patient.
机译:Joubert综合征(JS)是一种主要的常染色体隐性疾病,其特征是肌张力低下,共济失调,眼睛运动异常和智力残疾,并伴有明显的中脑畸形(“磨牙征象”)。可变特征包括视网膜营养不良,囊性肾病,肝纤维化和多发性。最近,在我们对JS遗传基础的理解上取得了实质性进展,包括鉴定了七个因果基因(NPHP1,AHI1,CEP290,RPGRIP1L,TMEM67 / MKS3,ARL13B和CC2D2A)。尽管取得了这一进展,但已知基因仍占病例的50%以下,而JS中几乎没有强的基因型与表型相关性。但是,可以根据临床特征确定基因检测的优先级。虽然所有七个JS基因都与初级纤毛/基底细胞器(PC / BB)的功能有关,但对PC / BB对大脑,肾脏,视网膜和肝脏发育/功能的要求如何却鲜为人知PC / BB功能的破坏导致这些器官的疾病。 PC / BB功能的最新研究表明,细胞器是多种信号传导途径所必需的,这些途径包括声波刺猬,WNT和血小板衍生的生长因子。由于共有的临床特征和潜在的分子病理生理学,JS被包括在迅速扩展的称为纤毛病的疾病中。纤毛病正在作为更复杂疾病的模型出现,其中多个基因的序列变异有助于在任何给定患者中表达的表型。

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