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阿什肯纳兹犹太患者中与VPS11突变相关的髓鞘形成不良和发育迟缓。

Hypomyelination and developmental delay associated with VPS11 mutation in Ashkenazi-Jewish patients.

作者信息

Edvardson Shimon, Gerhard Frank, Jalas Chaim, Lachmann Jens, Golan Dafna, Saada Ann, Shaag Avraham, Ungermann Christian, Elpeleg Orly

机构信息

Monique and Jacques Roboh Department of Genetic Research, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.

Department of Biology/Chemistry, Biochemistry Section, University of Osnabrück, Osnabrück, Germany.

出版信息

J Med Genet. 2015 Nov;52(11):749-53. doi: 10.1136/jmedgenet-2015-103239. Epub 2015 Aug 25.

Abstract

BACKGROUND

The genetic heterogeneity of developmental delay and cognitive impairment is vast. The endocytic network is essential for neural development and synaptic plasticity by regulating the sorting of numerous transmembrane proteins. Disruption of the pathway can lead to neuronal pathology. Endosomal biogenesis relies on two Rab proteins, Rab5 and Rab7, which bind to two hexameric tethering complexes, the endosomal class C core vacuole/endosome tethering complex (CORVET) and the late endosomal/lysosomal homotypic fusion and protein sorting complex (HOPS). Both complexes consist of four core proteins and differ by their specific Rab-binding proteins.

OBJECTIVES

To identify the molecular basis of a neurological disease, which consists of global developmental stagnation at 3-8 months, increasing appendicular spasticity, truncal hypotonia and acquired microcephaly, with variable seizure disorder, accompanied by thin corpus callosum, paucity of white matter and delayed myelination in eight patients from four unrelated Ashkenazi-Jewish (AJ) families.

METHODS

Exome analysis, homozygosity mapping and Mup1-GFP transport assay in mutant yeast.

RESULTS

Homozygosity for a missense mutation, p.Cys846Gly, in one of the endosomal biogenesis core proteins, VPS11, was identified in all the patients. This was shown to be a founder mutation with a carrier frequency of 0.6% in the AJ population. The homologous yeast mutant had moderate impairment of fusion of the late endosome to the vacuole in Mup1-GFP transport assay.

CONCLUSIONS

We speculate that in neuronal cells, impairment of fusion of the late endosome to the vacuole would attenuate the degradation of plasma membrane receptors, thereby underlying the progressive neuronal phenotype in our patients. The VPS11 p.Cys846Gly mutation should be added to the AJ carrier screening panel.

摘要

背景

发育迟缓与认知障碍的遗传异质性非常大。内吞网络通过调节众多跨膜蛋白的分选,对神经发育和突触可塑性至关重要。该通路的破坏会导致神经元病变。内体生物发生依赖于两种Rab蛋白,即Rab5和Rab7,它们与两种六聚体拴系复合物结合,即内体C类核心液泡/内体拴系复合物(CORVET)和晚期内体/溶酶体同型融合及蛋白质分选复合物(HOPS)。这两种复合物均由四种核心蛋白组成,且因其特定的Rab结合蛋白而有所不同。

目的

确定一种神经疾病的分子基础,该疾病表现为3至8个月时出现全面发育停滞、四肢痉挛加重、躯干肌张力减退和后天性小头畸形,并伴有可变的癫痫发作障碍,8名来自4个非近亲阿什肯纳兹犹太(AJ)家族的患者还伴有胼胝体变薄、白质稀少和髓鞘形成延迟。

方法

外显子组分析、纯合性定位以及在突变酵母中进行Mup1-GFP转运试验。

结果

在所有患者中均鉴定出内体生物发生核心蛋白之一VPS11中的一个错义突变p.Cys846Gly的纯合性。这被证明是一个奠基者突变,在AJ人群中的携带频率为0.6%。在Mup1-GFP转运试验中,同源酵母突变体的晚期内体与液泡的融合存在中度受损。

结论

我们推测,在神经元细胞中,晚期内体与液泡的融合受损会减弱质膜受体的降解,从而成为我们患者进行性神经元表型的基础。VPS11 p.Cys846Gly突变应添加到AJ携带者筛查面板中。

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