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墨西哥葡萄糖-6-磷酸脱氢酶缺乏症的分子异质性:一项为期7年项目的总体结果

Molecular heterogeneity of glucose-6-phosphate dehydrogenase deficiency in Mexico: overall results of a 7-year project.

作者信息

Vaca Gerardo, Arámbula Eliakym, Esparza Amparo

机构信息

División de Genética, Centro de Investigación Biomédica de Occidente, Instituto Mexicano del Seguro Social (IMSS), Guadalajara, Jalisco, Mexico.

出版信息

Blood Cells Mol Dis. 2002 May-Jun;28(3):436-44. doi: 10.1006/bcmd.2002.0532.

Abstract

Several years ago, a project aiming to determine (i) the molecular basis of G-6-PD deficiency, (ii) the distribution of four different mutant alleles previously detected, and (iii) the whole of polymorphic alleles that account for the overall prevalence of G-6-PD deficiency in Mexico was implemented. Nearly 5000 individuals-from the general population and patients with hemolytic anemia-belonging to at least 14 States were screened for G-6-PD deficiency. Seventy-six G-6-PD-deficient subjects were detected and the prevalence of G-6-PD deficiency in 4777 individuals from the general population was 0.71%. Screening for both mutations associated with enzyme deficiency and silent polymorphisms at the G-6-PD gene was performed in the enzyme-deficient individuals by PCR-SSCP combined with restriction enzyme analysis; the silent polymorphisms as well as the nondeficient variant G-6-PD A(376G) were also investigated in 366 G-6-PD normal individuals from the general population. In 88% of the enzyme-deficient individuals it was possible to define the mutation responsible and the type G-6-PD A- variants were the more common in both individuals from the general population and patients with hemolytic anemia. G-6-PD deficiency is heterogeneous at the DNA level in Mexico and up to date 10 different variants-8 in the present project and 2 previously-have been observed: G-6-PD A(-202A/376G), G-6-PD A(-376G/968C), G-6-PD Santamaria(376G/542T), G-6-PD Vanua Lava(383C), G-6-PD Tsukui(del561-563), G-6-PD "Mexico City"(680A), G-6-PD Seattle(844C), G-6PD Guadalajara(1159T),G-6-PD Nashville(1178A), and G-6-PD Union(1360T). The G-6-PD A(-) variants have a relatively homogeneous distribution and along with G-6-PD Santamaria(376G/542T), they account for 82% of the overall prevalence of G-6-PD deficiency in Mexico; all other seven variants represent 9% of the mutant alleles examined, and in the rest of the chromosomes the mutation responsible for the enzyme deficiency remains to be defined. Several of the variants observed in Mexico are common in Africa, South Europe, and Southeast Asia. The prevalence for the variant G-6-PD A(376G) was 1.64%. From 256 possible haplotypes only 14 were observed and haplotype analysis suggests that some of the G-6-PD variants probably were imported to Mexico by population flow from South Europe, Africa, and Southeast Asia. This work (i) identified the G-6-PD variants prevalent in Mexico, (ii) defines their geographical distribution, (iii) contributes to the knowledge of the genetic structure of the Mexican population, and (iv) will facilitate the molecular analysis of the G-6-PD gene in enzyme-deficient Mexican individuals.

摘要

几年前,实施了一个项目,旨在确定:(i)葡萄糖-6-磷酸脱氢酶(G-6-PD)缺乏症的分子基础;(ii)先前检测到的四种不同突变等位基因的分布;(iii)构成墨西哥G-6-PD缺乏症总体患病率的全部多态性等位基因。对来自至少14个州的近5000名个体——包括普通人群和溶血性贫血患者——进行了G-6-PD缺乏症筛查。检测到76名G-6-PD缺乏症患者,普通人群中4777名个体的G-6-PD缺乏症患病率为0.71%。通过聚合酶链反应-单链构象多态性(PCR-SSCP)结合限制性酶切分析,对酶缺乏个体进行与酶缺乏相关的突变以及G-6-PD基因沉默多态性的筛查;还对普通人群中366名G-6-PD正常个体进行了沉默多态性以及非缺陷变异型G-6-PD A(376G)的研究。在88%的酶缺乏个体中能够确定致病突变,G-6-PD A-变异型在普通人群个体和溶血性贫血患者中更为常见。在墨西哥,G-6-PD缺乏症在DNA水平上具有异质性,迄今为止已观察到10种不同变异型——本项目中8种,先前2种:G-6-PD A(-202A/376G)、G-6-PD A(-376G/968C)、G-6-PD圣玛丽亚型(376G/542T)、G-6-PD瓦努阿·拉瓦型(383C)、G-6-PD筑紫型(del561 - 563)、G-6-PD“墨西哥城型”(680A)、G-6-PD西雅图型(844C)、G-6-PD瓜达拉哈拉型(1159T)、G-6-PD纳什维尔型(1178A)和G-6-PD联合型(1360T)。G-6-PD A(-)变异型具有相对均匀的分布,与G-6-PD圣玛丽亚型(376G/542T)一起,它们占墨西哥G-6-PD缺乏症总体患病率的82%;所有其他7种变异型占所检测突变等位基因的9%,在其余染色体上,导致酶缺乏的突变尚待确定。在墨西哥观察到的几种变异型在非洲、南欧和东南亚很常见。变异型G-6-PD A(376G)的患病率为1.64%。从256种可能的单倍型中仅观察到14种,单倍型分析表明,一些G-6-PD变异型可能是通过人口流动从南欧、非洲和东南亚引入墨西哥的。这项工作:(i)确定了墨西哥普遍存在的G-6-PD变异型;(ii)明确了它们的地理分布;(iii)有助于了解墨西哥人群的遗传结构;(iv)将便于对墨西哥酶缺乏个体的G-6-PD基因进行分子分析。

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