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首页> 外文期刊>Clinical Genetics: An International Journal of Genetics in Medicine >Molecular findings and clinical data in a cohort of 150 patients with anophthalmia/microphthalmia
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Molecular findings and clinical data in a cohort of 150 patients with anophthalmia/microphthalmia

机译:150名失语症/小眼症患者的分子发现和临床数据

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摘要

Anophthalmia and microphthalmia (AM) are the most severe malformations of the eye, corresponding respectively to reduced size or absent ocular globe. Wide genetic heterogeneity has been reported and different genes have been demonstrated to be causative of syndromic and non-syndromic forms of AM. We screened seven AM genes [GDF6 (growth differentiation factor 6), FOXE3 (forkhead box E3), OTX2 (orthodenticle protein homolog 2), PAX6 (paired box 6), RAX (retina and anterior neural fold homeobox), SOX2 (SRY sex determining region Y-box 2), and VSX2 (visual system homeobox 2 gene)] in a cohort of 150 patients with isolated or syndromic AM. The causative genetic defect was identified in 21% of the patients (32/150). Point mutations were identified by direct sequencing of these genes in 25 patients (13 in SOX2, 4 in RAX, 3 in OTX2, 2 in FOXE3, 1 in VSX2, 1 in PAX6, and 1 in GDF6). In addition eight gene deletions (five SOX2, two OTX2 and one RAX) were identified using a semi-quantitative multiplex polymerase chain reaction (PCR) [quantitative multiplex PCR amplification of short fluorescent fragments (QMPSF)]. The causative genetic defect was identified in 21% of the patients. This result contributes to our knowledge of the molecular basis of AM, and will facilitate accurate genetic counselling.
机译:无眼症和小眼症(AM)是眼睛最严重的畸形,分别对应于眼球缩小或眼球缺失。已经报道了广泛的遗传异质性,并且已经证明了不同的基因是AM的综合征和非综合征形式的病因。我们筛选了七个AM基因[GDF6(生长分化因子6),FOXE3(叉头框E3),OTX2(正齿蛋白同源物2),PAX6(配对框6),RAX(视网膜和前神经折叠同源盒),SOX2(SRY性别)在150名患有孤立或综合征性AM的患者中确定了Y-box 2)和VSX2(视觉系统homeobox 2基因)区域。在21%的患者中发现了病因性遗传缺陷(32/150)。通过对25位患者中的这些基因进行直接测序来鉴定点突变(SOX2中13位,RAX 4位,OTX2 3位,FOXE3 2位,VSX2 1位,PAX6 1位,GDF6 1位)。另外,使用半定量多重聚合酶链反应(PCR)[短荧光片段的定量多重PCR扩增(QMPSF)]鉴定了八个基因缺失(五个SOX2,两个OTX2和一个RAX)。在21%的患者中发现了致病性遗传缺陷。该结果有助于我们了解AM的分子基础,并将有助于准确的遗传咨询。

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