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首页> 外文期刊>Cytogenetic and genome research >Cloning and characterization of an inversion breakpoint at 6q23.3 suggests a role for Map7 in sacral dysgenesis
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Cloning and characterization of an inversion breakpoint at 6q23.3 suggests a role for Map7 in sacral dysgenesis

机译:在6q23.3处克隆和鉴定一个倒转断点表明Map7在发育不全中的作用

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摘要

Here we report on a male patient with sacral dysgenesis (SD) and constitutional pericentric inversion of chromosome 6 (p11.2;q23.3). SD is a heterogeneous group of congenital anomalies with complex genetic etiology. Previously, a patient with sacral abnormalities and an interstitial deletion of 6q23→q25 region has been described. We speculated that a susceptibility gene for SD lies in 6q23.3 region (disrupted in both patients), and therefore, cloning of the breakpoint in our patient would lead to the identification of the disrupted gene. We performed FISH analysis followed by Southern blot analysis and inverse PCR to clone the breakpoint. The 6p11.2 breakpoint mapped very close to the centromere, and the 6q23.3 breakpoint localized in the ninth intron of the MAP7 gene. We then evaluated the involvement of MAP7 in SD by further screening of the gene in several patients with a similar phenotype. Two nucleotide changes causing Ile257Asn and Glu571Ala substitutions in the protein, both affecting amino acid residues conserved in the mouse homolog, were identified in two patients. Both changes are either very rare polymorphisms or true mutations, since they were not detected in 167 normal individuals nor found in the SNP database. Therefore, our study suggests MAP7 as a candidate gene for SD. However, we were unable to detect any sacral defects in the MAP7 knockout mice.
机译:在这里,我们报道了一个男性患者,其囊发育不全(SD)和6号染色体的体质性周围颠倒(p11.2; q23.3)。 SD是具有复杂遗传病因的先天性异质性人群。先前,已经描述了具有骨异常和间质缺失6q23→q25区域的患者。我们推测SD的易感基因位于6q23.3区域(均在两名患者中均受累),因此,在我们患者中克隆断点将导致鉴定受干扰的基因。我们先进行FISH分析,然后进行Southern杂交分析和反向PCR克隆断点。 6p11.2断点非常接近着丝粒,而6q23.3断点位于MAP7基因的第9个内含子。然后,我们通过进一步筛选几名具有相似表型的患者中的基因来评估MAP7在SD中的参与。在两名患者中鉴定出两个导致蛋白质中Ile257Asn和Glu571Ala取代的核苷酸变化,均影响小鼠同源物中保守的氨基酸残基。这两种变化都是非常罕见的多态性或真正的突变,因为它们在167名正常个体中未检测到,也未在SNP数据库中找到。因此,我们的研究建议MAP7作为SD的候选基因。但是,我们无法检测到MAP7基因敲除小鼠中的任何骨缺损。

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