首页> 外文期刊>American journal of medical genetics, Part A >Molecular analysis of a novel intragenic deletion in GPC3 in three cousins with Simpson-Golabi-Behmel syndrome
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Molecular analysis of a novel intragenic deletion in GPC3 in three cousins with Simpson-Golabi-Behmel syndrome

机译:三种瘤瘤中GPC3中的新型腺瘤缺失的分子分析综合征

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Simpson-Golabi-Behmel syndrome (SGBS) is characterized by multiple congenital abnormalities, pre/postnatal overgrowth, distinctive craniofacial features intellectual disability (ID) of variable degree, and an increased risk for embryonal tumors. SGBS is X-linked recessive and caused by deletions, duplications, and point mutations in GPC3, encoding a membrane associated cell surface heparan sulfate proteoglycan named glypican 3. GPC3 plays essential roles in the regulation of cell growth signaling and cell division. Here, we report on a family with three affected cousins who show variable clinical signs of SGBS and ID. Initial microarray-CGH revealed a deletion of approximately 30-50kb that includes at least one exon of GPC3. By subsequent Sanger sequencing of genomic DNA we could map the chromosomal break points to define a deletion size of 43,617 bp including exons 5 and 6 of the GPC3 gene. RT-PCR analysis on RNA derived from whole blood could further confirm the deletion of both exons on transcript level. This loss of two exons results in a frameshift and a premature stop of translation. Based on our results we have established a breakpoint spanning PCR that could identify the mutation in the mothers and grandmother of the patients. Thus, we provided a molecular test that allows accurate genetic counselling and prenatal diagnosis for this family.
机译:SIMPSON-GOLABI-BHMEL综合征(SGBS)的特征在于多重先天性异常,前/产后过度生长,独特的颅面特征具有可变程度的智力残疾(ID),以及胚胎肿瘤的风险增加。 SGBS是X链接的隐性和由GPC3中的缺失,重复和点突变引起的,编码膜相关细胞表面普康肝素硫酸盐蛋白多糖,其名为Glypican 3. GPC3在细胞生长信号传导和细胞分裂的调节中起重要作用。在这里,我们报告一个有三个受影响的堂兄弟的家庭,他们显示了SGBS和ID的可变临床迹象。初始微阵列-CGH显示缺失约30-50kb,其包括至少一个GPC3的外显子。通过后续的基因组DNA的桑默测序,我们可以映射染色体断裂点以定义43,617bp的缺失大小,包括GPC3基因的外显子5和6。 RT-PCR分析来自全血衍生的RNA可以进一步证实缺失对转录水平的外显子。这种两个外显子的失去导致架构和过早的翻译停止。根据我们的结果,我们建立了跨越PCR的断点,可以识别患者母亲和祖母的突变。因此,我们提供了一种分子测试,可以准确遗传咨询和该家庭的产前诊断。

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