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Mutations of Glucose-6-Phosphate Dehydrogenase Durham Santa-Maria and A+ Variants Are Associated with Loss Functional and Structural Stability of the Protein

机译:葡萄糖6磷酸脱氢酶DurhamSanta-Maria和A +变体的突变与蛋白质的功能和结构稳定性丧失相关

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摘要

Glucose-6-phosphate dehydrogenase (G6PD) deficiency is the most common enzymopathy in the world. More than 160 mutations causing the disease have been identified, but only 10% of these variants have been studied at biochemical and biophysical levels. In this study we report on the functional and structural characterization of three naturally occurring variants corresponding to different classes of disease severity: Class I G6PD Durham, Class II G6PD Santa Maria, and Class III G6PD A+. The results showed that the G6PD Durham (severe deficiency), and the G6PD Santa Maria and A+ (less severe deficiency) (Class I, II and III, respectively) affect the catalytic efficiency of these enzymes, are more sensitive to temperature denaturing, and affect the stability of the overall protein when compared to the wild type WT-G6PD. In the variants, the exposure of more and buried hydrophobic pockets was induced and monitored with 8-Anilinonaphthalene-1-sulfonic acid (ANS) fluorescence, directly affecting the compaction of structure at different levels and probably reducing the stability of the protein. The degree of functional and structural perturbation by each variant correlates with the clinical severity reported in different patients.
机译:6-磷酸葡萄糖脱氢酶(G6PD)缺乏症是世界上最常见的酶病。已经鉴定出导致该疾病的160多种突变,但是在生化和生物物理水平上仅研究了这些变异的10%。在这项研究中,我们报告了三种自然发生的变体的功能和结构特征,这些变体分别对应于疾病严重程度的不同类别:I类G6PD杜伦,II类G6PD圣塔玛丽亚和III类G6PD A +。结果表明,G6PD Durham(严重缺乏症)和G6PD Santa Maria和A +(严重程度较轻的缺乏症)(分别为I,II和III类)影响这些酶的催化效率,对温度变性更敏感,并且与野生型WT-G6PD相比,它影响总蛋白的稳定性。在这些变体中,使用8-苯胺基萘-1-磺酸(ANS)荧光诱导并监控了更多和掩埋的疏水口袋的暴露,直接影响了结构在不同水平上的紧实性,并可能降低了蛋白质的稳定性。每个变体的功能和结构扰动程度与不同患者中报道的临床严重程度相关。

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