...
首页> 外文期刊>Human Molecular Genetics >Genotype–phenotype correlation in patients with isovaleric acidaemia: comparative structural modelling and computational analysis of novel variants
【24h】

Genotype–phenotype correlation in patients with isovaleric acidaemia: comparative structural modelling and computational analysis of novel variants

机译:异戊症患者基因型 - 表型相关性:新型变种的比较结构建模与计算分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Isovaleric acidaemia (IVA) is an autosomal recessive inborn error of leucine metabolism. It is caused by a deficiency in the mitochondrial isovaleryl-CoA dehydrogenase (IVD) enzyme. In this study, we investigated eight patients with IVA. The patients’ diagnoses were confirmed by urinary organic acid analysis and the blood C5-Carnitine value. A molecular genetic analysis of the IVD gene revealed nine different variants: five were missense variants (c.1193G?>?A; p. R398Q, c.1207T?>?A; p. Y403N, c.872C?>?T; p. A291V, c.749G?>?C; p. G250A, c.1136T?>?C; p.I379T), one was a frameshift variant (c.ins386 T; p. Y129fs), one was a splicing variant (c.465?+?2T?>?C), one was a polymorphism (c.732C?>?T; p. D244D), and one was an intronic benign variant (c.287?+?14T?>?C). Interestingly, all variants were in homozygous form, and four variants were novel (p. Y403N, p. Y129fs, p. A291V, p. G250A) and absent from 200 normal chromosomes. We performed protein modelling and dynamics analyses, pathogenicity and stability analyses, and a physiochemical properties analysis of the five missense variants (p.Y403N, R398Q, p.A291V, p.G250A, and p.I379T). Variants p.I379T and p.R398Q were found to be the most deleterious and destabilizing compared to variants p.A291V and p.Y403N. However, the four variants were predicted to be severe by the protein dynamic and in silico analysis, which was consistent with the patients’ clinical phenotypes. The p.G250A variant was computationally predicted as mild, which was consistent with the severity of the clinical phenotype. This study reveals a potentially meaningful genotype-phenotype correlation for our patient cohort and highlights the development and use of this computational analysis for future assessments of genetic variants in the clinic.
机译:异戊酸血症(IVA)是亮氨酸代谢的常染色体隐性天生误差。它是由线粒体异酚酸盐 - 辅酶脱氢酶(IVD)酶的缺陷引起的。在这项研究中,我们调查了八名IVA患者。通过尿有有机酸分析和血液C5-肉碱值证实患者的诊断。 IVD基因的分子遗传分析显示出九种不同的变体:五个是畸形变种(C.1193G ???; r398q,c.1207t ??; p。y403n,c.872c?> t; p。a291v,c.749g?> c; p。g250a,c.1136t?> c; p.i379t),一个是架构变体(c.ins386 t; p.y129fs),一个是拼接变体(C.465?+?2T?>?C),一种是多态性(C.732C?>ΔT; p.D244D),一个是一个内介性良性变化(C.287?+?14T? C)。有趣的是,所有变体都是纯合的形式,四种变体是新的(p。Y403N,p。Y129FS,p。A291V,p。G250A)和200个正常染色体中不存在。我们进行了蛋白质建模和动力学分析,致病性和稳定性分析,以及对五个畸形变体的生理化学特性分析(P.Y403N,R398Q,P.A291V,P.G250A和P.I379T)。与变体P.A291V和P.Y403N相比,发现variants p.i379t和p.r398q是最有害和最有害的稳定性。然而,预计该四种变体是由蛋白质动态和硅分析的严重,这与患者的临床表型一致。 P.G250A变体被计算地预测为温和,这与临床表型的严重程度一致。本研究揭示了我们患者队列的潜在有意义的基因型 - 表型相关性,并强调了该计算分析的开发和使用临床遗传变异的未来评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号