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Genetic polymorphism of APOB is associated with diabetes mellitus in sickle cell disease

机译:APOB的遗传多态性与镰状细胞病中的糖尿病有关

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摘要

Environmental variations have strong influences in the etiology of type 2 diabetes mellitus. In this study, we investigated the genetic basis of diabetes in patients with sickle cell disease (SCD), a Mendelian disorder accompanied by distinct physiological conditions of hypoxia and hyperactive erythropoiesis. Compared to the general African-American population, the prevalence of diabetes as assessed in two SCD cohorts of 856 adults was low, but it markedly increased with older age and overweight. Meta-analyses of over 5 million single nucleotide polymorphisms (SNPs) in the two SCD cohorts identified a SNP, rs59014890, the C allele of which associated with diabetes risk at P= 3.2×10-8 and, surprisingly, associated with decreased APOB expression in peripheral blood mononuclear cells (PBMCs). The risk allele of the APOB polymorphism was associated with overweight in 181 SCD adolescents, with diabetes risk in 592 overweight, non-SCD African Americans ≥45 years of age, and with elevated plasma lipid concentrations in general populations. In addition, lower expression level of APOB in PBMCs was associated with higher values for percent hemoglobin A1C and serum total cholesterol and triglyceride concentrations in patients with Chuvash polycythemia, a congenital disease with elevated hypoxic responses and increased erythropoiesis at normoxia. Our study reveals a novel, environment-specific genetic polymorphism that may affect key metabolic pathways contributing to diabetes in SCD.
机译:环境变化对2型糖尿病的病因有很大影响。在这项研究中,我们调查了镰刀状细胞病(SCD),孟德尔疾病并伴有不同的缺氧和促红细胞生成过度生理状况的糖尿病患者的遗传基础。与一般的非裔美国人相比,在两个SCD队列中856名成年人中评估的糖尿病患病率较低,但随着年龄的增长和超重而明显增加。对两个SCD队列中超过500万个单核苷酸多态性(SNP)的荟萃分析确定了一个SNP rs59014890,其C等位基因与P = 3.2×10 -8 的糖尿病风险相关,并且令人惊讶的是,其与外周血单核细胞(PBMC)中APOB表达的降低有关。 APOB基因多态性的风险等位基因与181名SCD青少年超重,592名超重,≥45岁的非SCD非洲裔美国人的糖尿病风险以及一般人群血浆脂质浓度升高有关。此外,PBMC中APOB的较低表达水平与Chuvash真性红细胞增多症,低氧反应增加,常氧性红细胞增多的先天性疾病患者的血红蛋白A1C百分比,血清总胆固醇和甘油三酯浓度升高有关。我们的研究揭示了一种新的,特定于环境的遗传多态性,它可能会影响导致SCD糖尿病的关键代谢途径。

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