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帕金森病中的 VPS35 突变。

VPS35 mutations in Parkinson disease.

机构信息

Department of Medical Genetics, University of British Columbia, Vancouver, Canada.

出版信息

Am J Hum Genet. 2011 Jul 15;89(1):162-7. doi: 10.1016/j.ajhg.2011.06.001.

Abstract

The identification of genetic causes for Mendelian disorders has been based on the collection of multi-incident families, linkage analysis, and sequencing of genes in candidate intervals. This study describes the application of next-generation sequencing technologies to a Swiss kindred presenting with autosomal-dominant, late-onset Parkinson disease (PD). The family has tremor-predominant dopa-responsive parkinsonism with a mean onset of 50.6 ± 7.3 years. Exome analysis suggests that an aspartic-acid-to-asparagine mutation within vacuolar protein sorting 35 (VPS35 c.1858G>A; p.Asp620Asn) is the genetic determinant of disease. VPS35 is a central component of the retromer cargo-recognition complex, is critical for endosome-trans-golgi trafficking and membrane-protein recycling, and is evolutionarily highly conserved. VPS35 c.1858G>A was found in all affected members of the Swiss kindred and in three more families and one patient with sporadic PD, but it was not observed in 3,309 controls. Further sequencing of familial affected probands revealed only one other missense variant, VPS35 c.946C>T; (p.Pro316Ser), in a pedigree with one unaffected and two affected carriers, and thus the pathogenicity of this mutation remains uncertain. Retromer-mediated sorting and transport is best characterized for acid hydrolase receptors. However, the complex has many types of cargo and is involved in a diverse array of biologic pathways from developmental Wnt signaling to lysosome biogenesis. Our study implicates disruption of VPS35 and retromer-mediated trans-membrane protein sorting, rescue, and recycling in the neurodegenerative process leading to PD.

摘要

本研究描述了下一代测序技术在一个瑞士家系中的应用,该家系表现为常染色体显性遗传、晚发性帕金森病(PD)。该家系具有震颤为主的多巴反应性帕金森病,平均发病年龄为 50.6±7.3 岁。外显子组分析提示空泡蛋白分选 35(VPS35 c.1858G>A;p.Asp620Asn)中的天冬氨酸-天冬酰胺突变是疾病的遗传决定因素。VPS35 是逆行体货物识别复合物的核心组成部分,对内体-高尔基体转运和膜蛋白回收至关重要,且在进化上高度保守。VPS35 c.1858G>A 在家系的所有受影响成员以及另外三个家系和一个散发性 PD 患者中均被发现,但在 3309 名对照中未观察到。对家族性受影响先证者的进一步测序仅发现另一个错义变体,VPS35 c.946C>T;(p.Pro316Ser),在一个家系中,一个未受影响,两个受影响的携带者,因此该突变的致病性仍不确定。逆行体介导的分拣和运输在酸水解酶受体中得到了最好的描述。然而,该复合物有许多类型的货物,参与从发育 Wnt 信号到溶酶体发生的多种生物途径。我们的研究表明 VPS35 的破坏和逆行体介导的跨膜蛋白分拣、挽救和再循环在导致 PD 的神经退行性过程中起作用。

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