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通过生化和计算机模拟分析评估葡萄糖-6-磷酸脱氢酶第385密码子的三种突变

Evaluation of Three Mutations in Codon 385 of Glucose-6-Phosphate Dehydrogenase via Biochemical and In Silico Analysis.

作者信息

Gálvez-Ramírez Adriana, González-Valdez Abigail, Hernández-Ochoa Beatriz, Canseco-Ávila Luis Miguel, López-Roblero Alexander, Arreguin-Espinosa Roberto, Pérez de la Cruz Verónica, Hernández-Urzua Elizabeth, Cárdenas-Rodríguez Noemi, Enríquez-Flores Sergio, De la Mora-De la Mora Ignacio, Vidal-Limon Abraham, Gómez-Manzo Saúl

机构信息

Laboratorio de Bioquímica Genética, Instituto Nacional de Pediatría, Secretaría de Salud, Mexico City 04530, Mexico.

Departamento de Biología Molecular y Biotecnología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City 04510, Mexico.

出版信息

Int J Mol Sci. 2024 Nov 22;25(23):12556. doi: 10.3390/ijms252312556.

Abstract

Glucose-6-phosphate dehydrogenase (G6PD) deficiency is an enzymopathy that affects approximately 500 million people worldwide. A great number of mutations in the gene have been described. However, three class A G6PD variants known as G6PD Tomah (C385R), G6PD Kangnam (C385G), and G6PD Madrid (C385W) have been reported to be clinically important due to their associations with severe clinical manifestations such as hemolytic anemia. Therefore, this work aimed to perform, for the first time, biochemical and functional characterizations of these variants. The G6PD variants were cloned and purified for this purpose, followed by analyses of their kinetic parameters and thermal stability, as well as in silico studies. The results showed that the mutations induced changes in the proteins. Regarding the kinetic parameters, it was observed that the three variants showed lower affinities for G6P and NADP, as well as lower thermal stability compared to WT-G6PD. Molecular dynamics simulations showed that C385 mutations induced changes around neighboring amino acids. Metadynamics simulations showed that most remarkable changes account for the binding pocket volumes, particularly in the structural NADP binding site, with a concomitant loss of affinity for catalytic processes.

摘要

葡萄糖-6-磷酸脱氢酶(G6PD)缺乏症是一种酶病,全球约有5亿人受其影响。该基因已发现大量突变。然而,据报道,三种A类G6PD变体,即G6PD Tomah(C385R)、G6PD Kangnam(C385G)和G6PD Madrid(C385W),由于与溶血性贫血等严重临床表现有关,在临床上具有重要意义。因此,本研究旨在首次对这些变体进行生化和功能表征。为此,对G6PD变体进行了克隆和纯化,随后分析了它们的动力学参数和热稳定性,并进行了计算机模拟研究。结果表明,这些突变导致了蛋白质的变化。关于动力学参数,观察到这三种变体对G6P和NADP的亲和力较低,与野生型G6PD相比,热稳定性也较低。分子动力学模拟表明,C385突变导致相邻氨基酸周围发生变化。元动力学模拟表明,最显著的变化是结合口袋体积,特别是在结构性NADP结合位点,同时催化过程的亲和力丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36d7/11641639/3000d97f11aa/ijms-25-12556-g001.jpg

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