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PRRT2 突变与发作性疾病。

PRRT2 mutations and paroxysmal disorders.

机构信息

INSERM, UMRS 975, et CNRS 7225 - CRICM, Hôpital Pitié-Salpêtrière, Paris, France.

出版信息

Eur J Neurol. 2013 Jun;20(6):872-8. doi: 10.1111/ene.12104. Epub 2013 Feb 9.

Abstract

In the past year, mutations in the PRRT2 gene have been identified in patients with paroxysmal kinesigenic dyskinesia and other paroxysmal disorders. We conducted a review of the literature on PRRT2 mutation-associated disorders. Our objectives were to describe the wide clinical spectrum associated with PRRT2 mutations, and to present the current hypotheses on the underlying pathophysiology. PRRT2 mutations are associated with a wide range of clinical syndromes: the various paroxysmal dyskinesias, infantile seizures, paroxysmal torticollis, migraine, hemiplegic migraine, episodic ataxia and even intellectual disability in the homozygous state. The PRRT2 protein, through its interaction with SNAP-25, could play a role in synaptic regulation in the cortex and the basal ganglia. The pathogenesis may be caused by PRRT2 loss of function, which may induce synaptic deregulation and neuronal hyperexcitability. However, this does not explain the phenotypic variability, which is likely modulated by environmental factors, modifier genes or age-dependent expression. The clinical spectrum of PRRT2 mutations has expanded among paroxysmal disorders and beyond. Unraveling the molecular pathways linking the genetic defect to its clinical expression will be crucial for the diagnosis and treatment of these disorders.

摘要

在过去的一年中,PRRT2 基因突变已在发作性运动诱发性运动障碍和其他发作性疾病患者中被发现。我们对与 PRRT2 突变相关疾病的文献进行了回顾。我们的目的是描述与 PRRT2 突变相关的广泛临床谱,并提出目前对潜在病理生理学的假设。PRRT2 突变与广泛的临床综合征相关:各种发作性运动障碍、婴儿发作性疾病、发作性斜颈、偏头痛、偏瘫性偏头痛、阵发性共济失调,甚至纯合状态下的智力障碍。PRRT2 蛋白通过与 SNAP-25 的相互作用,可能在皮层和基底节的突触调节中发挥作用。发病机制可能是由 PRRT2 功能丧失引起的,这可能导致突触失调和神经元过度兴奋。然而,这并不能解释表型的可变性,这可能是由环境因素、修饰基因或年龄依赖性表达来调节的。PRRT2 突变的临床谱在发作性疾病中不断扩大。阐明将遗传缺陷与其临床表达联系起来的分子途径对于这些疾病的诊断和治疗至关重要。

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