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首页> 外文期刊>European journal of human genetics: EJHG >Congenital disorders of glycosylation: other causes of ichthyosis.
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Congenital disorders of glycosylation: other causes of ichthyosis.

机译:先天性糖基化疾病:鱼鳞病的其他原因。

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摘要

We have identified a deletion of 3 base pairs in the dystrophin gene (DMD), c.9711_9713del, in a family with nonspecific X-linked intellectual disability (ID) by sequencing of the exons of 86 known X-linked ID genes. This in-frame deletion results in the deletion of a single-amino-acid residue, Leu3238, in the brain-specific isoform Dp71 of dystrophin. Linkage analysis supported causality as the mutation was present in the 7.6?cM linkage interval on Xp22.11-Xp21.1 with a maximum positive LOD score of 2.41 (MRX85 locus). Molecular modeling predicts that the p.(Leu3238del) deletion results in the destabilization of the C-terminal domain of dystrophin and hence reduces the ability to interact with β-dystroglycan. Correspondingly, Dp71 protein levels in lymphoblastoid cells from the index patient are 6.7-fold lower than those in control cell lines (P=0.08). Subsequent determination of the creatine kinase levels in blood of the index patient showed a mild but significant elevation in serum creatine kinase, which is in line with impaired dystrophin function. In conclusion, we have identified the first DMD mutation in Dp71 that results in ID without muscular dystrophy.
机译:我们通过对86个已知的X连锁ID基因的外显子进行测序,确定了肌营养不良蛋白基因(DMD)c.9711_9713del中3个碱基对的缺失,该家族具有非特异性的X连锁智力障碍(ID)。这种框内缺失导致肌营养不良蛋白的脑特异性同工型Dp71中单个氨基酸残基Leu3238的缺失。连锁分析支持因果关系,因为该突变存在于Xp22.11-Xp21.1上的7.6?cM连锁区间中,最大阳性LOD得分为2.41(MRX85基因座)。分子建模预测,p。(Leu3238del)缺失会导致肌营养不良蛋白C末端结构域的不稳定,从而降低与β-营养不良聚糖相互作用的能力。相应地,来自该索引患者的淋巴母细胞中的Dp71蛋白水平比对照细胞系低6.7倍(P = 0.08)。随后测定该索引患者血液中的肌酸激酶水平,显示血清肌酸激酶轻度但显着升高,这与肌营养不良蛋白功能受损相符。总之,我们已经确定了Dp71中第一个DMD突变,该突变导致ID无肌营养不良。

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