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来自撒哈拉以南非洲地区的葡萄糖-6-磷酸脱氢酶(G6PD)变体的分子动力学

Molecular dynamics of G6PD variants from sub-Saharan Africa.

作者信息

Batista da Rocha Jorge, Othman Houcemeddine, Hazelhurst Scott

机构信息

Sydney Brenner Institute for Molecular Bioscience, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

Division of Human Genetics, National Health Laboratory Service, and School of Pathology, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

出版信息

Biochem Biophys Rep. 2022 Mar 17;30:101236. doi: 10.1016/j.bbrep.2022.101236. eCollection 2022 Jul.

Abstract

Precision medicine uses genomic guidance to improve drug treatment safety and efficacy. Prior knowledge of genetic variant impact can enable such strategies, but current knowledge of African variants remains scarce. variants are linked to haemolytic adverse effects for a number of drugs commonly used in African populations. We have investigated a set of variants with structural bioinformatics techniques to further characterise variants with known effect, and gain insights into variants with unknown impact. We observed wide variations in patterns of root-mean-square deviation between wild-type and variant structures. Variants with known, highly deleterious impact show structural effects which may likely result in the destabilisation of the G6PD homodimer. The V68M and N126D variants (which are both common across African populations, and together form the A- haplotype) induce large conformational shifts in the catalytic NADP+ binding domain. We observed a greater impact for the haplotype than for each of the individual variants in these cases. A novel African variant (M207T) shows the potential to disrupt interactions within the protein core, urging further investigation. We explore how characterising the molecular impact of African variants can enable advanced strategies for precision medicine, as well as impact the use of novel therapeutics aiming to treat G6PD deficiency. This knowledge can assist in bridging current knowledge gaps, and aid to facilitate precision medicine applications in African populations.

摘要

精准医学利用基因组指导来提高药物治疗的安全性和有效性。对基因变异影响的先验知识能够促成此类策略,但目前对非洲人群变异的了解仍然匮乏。某些变异与非洲人群常用的多种药物的溶血性不良反应有关。我们运用结构生物信息学技术研究了一组变异,以进一步表征已知有影响的变异,并深入了解影响未知的变异。我们观察到野生型和变异型结构之间的均方根偏差模式存在广泛差异。已知具有高度有害影响的变异显示出可能导致G6PD同型二聚体不稳定的结构效应。V68M和N126D变异(在非洲人群中都很常见,共同构成A-单倍型)在催化性NADP+结合域中诱导了较大的构象变化。在这些情况下,我们观察到单倍型的影响比每个单独的变异更大。一种新的非洲变异(M207T)显示出破坏蛋白质核心内相互作用的可能性,亟待进一步研究。我们探讨了表征非洲人群G6PD变异的分子影响如何能够促成精准医学的先进策略,以及如何影响旨在治疗G6PD缺乏症的新型疗法的使用。这些知识有助于弥合当前的知识差距,并促进精准医学在非洲人群中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7552/8933681/18a9e3c965e5/gr1.jpg

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