首页> 美国卫生研究院文献>American Journal of Human Genetics >Somatic-cell selection is a major determinant of the blood-cell phenotype in heterozygotes for glucose-6-phosphate dehydrogenase mutations causing severe enzyme deficiency.
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Somatic-cell selection is a major determinant of the blood-cell phenotype in heterozygotes for glucose-6-phosphate dehydrogenase mutations causing severe enzyme deficiency.

机译:体细胞选择是杂合子中血细胞表型的主要决定因素该杂合子用于导致严重的酶缺乏的葡萄糖-6-磷酸脱氢酶突变。

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摘要

X-chromosome inactivation in mammals is regarded as an essentially random process, but the resulting somatic-cell mosaicism creates the opportunity for cell selection. In most people with red-blood-cell glucose-6-phosphate dehydrogenase (G6PD) deficiency, the enzyme-deficient phenotype is only moderately expressed in nucleated cells. However, in a small subset of hemizygous males who suffer from chronic nonspherocytic hemolytic anemia, the underlying mutations (designated class I) cause more-severe G6PD deficiency, and this might provide an opportunity for selection in heterozygous females during development. In order to test this possibility we have analyzed four heterozygotes for class I G6PD mutations: two with G6PD Portici (1178G-->A) and two with G6PD Bari (1187C-->T). We found that in fractionated blood cell types (including erythroid, myeloid, and lymphoid cell lineages) there was a significant excess of G6PD-normal cells. The significant concordance that we have observed in the degree of imbalance in the different blood-cell lineages indicates that a selective mechanism is likely to operate at the level of pluripotent blood stem cells. Thus, it appears that severe G6PD deficiency affects adversely the proliferation or the survival of nucleated blood cells and that this phenotypic characteristic is critical during hematopoiesis.
机译:哺乳动物中X染色体的失活被认为是一个基本的随机过程,但由此产生的体细胞镶嵌术为细胞选择创造了机会。在大多数患有红细胞葡萄糖6磷酸脱氢酶(G6PD)缺陷的人中,酶缺陷表型仅在有核细胞中中等表达。但是,在患有慢性非球囊溶血性贫血的一小部分半合子男性中,潜在的突变(指定为I类)会导致更严重的G6PD缺乏症,这可能为杂合子女性在发育过程中的选择提供了机会。为了测试这种可能性,我们分析了I类G6PD突变的四个杂合子:两个带有G6PD Portici(1178G-> A)和两个带有G6PD Bari(1187C-> T)。我们发现,在分离的血细胞类型(包括红系,髓样和淋巴样细胞谱系)中,G6PD正常细胞明显过量。我们在不同血细胞谱系中失衡程度方面观察到的显着一致性表明,选择性机制可能在多能干细胞水平上起作用。因此,看来严重的G6PD缺乏症不利地影响了有核血细胞的增殖或存活,并且这种表型特征在造血过程中是至关重要的。

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