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Mosaicism of the UDP-Galactose Transporter SLC35A2 Causes a Congenital Disorder of Glycosylation

机译:UDP-半乳糖转运蛋白SLC35A2的马赛克引起先天性糖基化障碍

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摘要

Biochemical analysis and whole-exome sequencing identified mutations in the Golgi-localized UDP-galactose transporter SLC35A2 that define an undiagnosed X-linked congenital disorder of glycosylation (CDG) in three unrelated families. Each mutation reduced UDP-galactose transport, leading to galactose-deficient glycoproteins. Two affected males were somatic mosaics, suggesting that a wild-type SLC35A2 allele may be required for survival. In infancy, the commonly used biomarker transferrin showed abnormal glycosylation, but its appearance became normal later in childhood, without any corresponding clinical improvement. This may indicate selection against cells carrying the mutant allele. To detect other individuals with such mutations, we suggest transferrin testing in infancy. Here, we report somatic mosaicism in CDG, and our work stresses the importance of combining both genetic and biochemical diagnoses.
机译:生化分析和全外显子组测序确定了高尔基体定位的UDP-半乳糖转运蛋白SLC35A2中的突变,该突变定义了三个无关家族中未诊断的X连锁先天性糖基化疾病(CDG)。每个突变都会减少UDP-半乳糖运输,从而导致半乳糖缺陷的糖蛋白。两名受影响的雄性为体细胞镶嵌体,表明可能需要野生型SLC35A2等位基因才能生存。在婴儿期,常用的生物标志物转铁蛋白显示异常糖基化,但其外观在儿童期后期变得正常,没有任何相应的临床改善。这可能表明针对携带突变等位基因的细胞的选择。为了检测具有此类突变的其他个体,我们建议在婴儿期进行转铁蛋白测试。在这里,我们报道了CDG中的体细胞镶嵌症,我们的工作强调了将遗传和生化诊断结合起来的重要性。

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