首页> 美国卫生研究院文献>European Journal of Human Genetics >Characterization of two ectrodactyly-associated translocation breakpoints separated by 2.5 Mb on chromosome 2q14.1–q14.2
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Characterization of two ectrodactyly-associated translocation breakpoints separated by 2.5 Mb on chromosome 2q14.1–q14.2

机译:2q14.1–q14.2染色体上由2.5 Mb隔开的两个与外反应相关的易位转折点的表征

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摘要

Split hand-split foot malformation or ectrodactyly is a heterogeneous congenital defect of digit formation. The aim of this study is the mapping of the breakpoints and a detailed molecular characterization of the candidate genes for an isolated and syndromic form of ectrodactyly, both associated with de novo apparently balanced chromosome translocations involving the same chromosome 2 band, [t(2;11)(q14.2;q14.2)] and [t(2;4)(q14.1;q35)], respectively. Breakpoints were mapped by fluorescence in situ hybridization using bacterial artificial chromosome clones. Where possible, these breakpoints were further delimited. Candidate genes were screened for pathogenic mutations and the expression levels of two of them analysed. The isolated bilateral split foot malformation-associated chromosome 2 breakpoint was localized at 120.9 Mb, between the two main candidate genes, encoding GLI-Kruppel family member GLI2 and inhibin-βB. The second breakpoint associated with holoprosencephaly, hypertelorism and ectrodactyly syndrome was mapped 2.5 Mb proximal at 118.4 Mb and the candidate genes identified from this region were the insulin-induced protein 2 and the homeobox protein engrailed-1. No clear pathogenic mutations were identified in any of these genes. The breakpoint between INHBB and GLI2 coincides with a previously identified translocation breakpoint associated with ectrodactyly. We propose a mechanism by which translocations in the 2q14.1–q14.2 region disrupt the specific arrangement of long-range regulatory elements that control the tight quantitative spatiotemporal expression of one or more genes from the breakpoint region.
机译:手裂或足趾畸形是指指形成的异质先天性缺陷。这项研究的目的是为分离和综合征形式的外生殖器的断点作图和候选基因的详细分子表征,这两者都涉及从头到尾明显平衡的染色体易位,涉及同一条2号染色体,[t(2; 11)(q14.2; q14.2)]和[t(2; 4)(q14.1; q35)]。使用细菌人工染色体克隆通过荧光原位杂交来绘制断点。在可能的情况下,进一步确定这些断点。筛选候选基因的致病突变,并分析其中两个的表达水平。分离出的双侧与双脚畸形相关的2号染色体断点位于两个主要候选基因之间,分别编码GLI-Kruppel家族成员GLI2和抑制素-βB,为120.9 Mb。与全前脑,高智主义和外生殖器综合征相关的第二个断点定位在118.4 Mb处近2.5 Mb,从该区域鉴定出的候选基因是胰岛素诱导的蛋白2和同源盒蛋白engageed-1。在任何这些基因中均未鉴定出明显的致病突变。 INHBB和GLI2之间的断点与先前确定的与异位相关的易位断点重合。我们提出了一种机制,通过该机制,2q14.1–q14.2区域中的易位破坏了远程调控元件的特定排列,该元件控制了一个或多个来自断点区域的基因的紧密定量时空表达。

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