Martínez-Jacobo L, Córdova-Fletes C, Ortiz-López R, Rivas F, Saucedo-Carrasco C, Rojas-Martínez A
Departamento de Bioquímica y Medicina Molecular, Facultad de Medicina, Monterrey, Mexico.
Mol Syndromol. 2013 Sep;4(6):285-91. doi: 10.1159/000353510.
In this study, we present a female patient with a constitutional de novo deletion in 7q21.3q31.1 as determined by G-banding and CGH-SNP arrays. She exhibited, among other features, psychomotor retardation, congenital severe bilateral glaucoma, a cleft palate, and heart defect. Microarray assay disclosed a deleted 12.5-Mb region roughly 88 kb downstream the ectrodactyly critical region; thus, the patient's final karyotype was 46,XX.arr 7q21.3q31.1(96,742,140-109,246,085)×1 dn. This girl represents the fourth patient described so far with congenital glaucoma and a deletion encompassing or overlapping the 7q21.3q31.1 region, and confirms the presence of a locus or loci related to such a clinical feature. According to our results, the proneness to ocular defects secondary to 7q intermediate deletions could be caused by co-deletion of TAC1, HBP1, and a small cluster of cytochrome P450 genes (subfamily 3A). This conclusion is supported by their functional roles and expression locations as well as because TAC1 is related to the functional pathway of the MYOC gene whose mutations are linked to glaucoma. Moreover, given that this girl is clinically reminiscent of several phenotypes related to diverse deletions within 7q21q32, our results and observations offer a general overview of the gene content of deletions/phenotypes overlapping 7q21.3q31.1 and confirm that loci distal to DLX genes including the CUX1 gene and potential regulatory elements downstream from DLX5 are unrelated to ectrodactyly.
在本研究中,我们报告了一名女性患者,通过G显带和比较基因组杂交-单核苷酸多态性(CGH-SNP)阵列确定其7q21.3q31.1存在先天性新发缺失。除其他特征外,她表现出精神运动发育迟缓、先天性重度双侧青光眼、腭裂和心脏缺陷。微阵列分析显示在并指临界区域下游约88 kb处有一个12.5 Mb的缺失区域;因此,患者的最终核型为46,XX。arr 7q21.3q31.1(96,742,140 - 109,246,085)×1 dn。该女孩是迄今为止描述的第四例患有先天性青光眼且缺失区域包含或重叠7q21.3q31.1区域的患者,并证实存在与这种临床特征相关的一个或多个基因座。根据我们的结果,7号染色体中间缺失继发眼部缺陷的倾向可能是由于TAC1、HBP1和一小簇细胞色素P450基因(3A亚家族)共同缺失所致。这一结论得到了它们的功能作用和表达位置的支持,并且因为TAC1与MYOC基因的功能途径相关,而MYOC基因突变与青光眼有关。此外,鉴于该女孩在临床上让人联想到与7q21q32内不同缺失相关的几种表型,我们的结果和观察提供了7q21.3q31.1重叠缺失/表型的基因内容的总体概述,并证实DLX基因远端包括CUX1基因以及DLX5下游的潜在调控元件与并指无关。