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全基因组关联研究鉴定出 GOT1 中的遗传变异可决定血清天门冬氨酸氨基转移酶水平。

Genome-wide association study identifies genetic variants in GOT1 determining serum aspartate aminotransferase levels.

机构信息

Division of Endocrinology, Diabetes and Nutrition, University of Maryland School of Medicine, Baltimore, MD 21201, USA.

出版信息

J Hum Genet. 2011 Nov;56(11):801-5. doi: 10.1038/jhg.2011.105. Epub 2011 Sep 8.

Abstract

We carried out a genome-wide association study of serum aspartate aminotransferase (AST) activity in 866 Amish participants of the Heredity and Phenotype Intervention Heart Study and identified significant association of AST activity with a cluster of single nucleotide polymorphisms located on chromosome 10q24.1 (peak association was rs17109512; P=2.80E-14), in the vicinity of GOT1, the gene encoding cytosolic AST (cAST). Sequencing of GOT1 revealed an in-frame deletion of three nucleic acids encoding asparagine at position 389 c.1165_1167delAAC (p.Asn389del) in the gene. Deletion carriers had significantly lower AST activity levels compared with homozygotes for the common allele (mean±s.d.: 10.0±2.8 versus 18.8±5.2 U l(-1); P=2.80E-14). Further genotyping of the deletion in other Amish samples (n=1932) identified an additional 20 carriers (minor allele frequency (MAF)=0.0052). The deletion was not detected in 647 outbred Caucasians. Asn at codon 389 is conserved among known mammalian cASTs. In vitro transient transfection of wild-type and mutant cAST indicated that mutant cAST protein was barely detectable in the cells. Furthermore, even after correction for cAST expression, mutant cAST had markedly diminished enzymatic activity. Remarkably, we did not find any association between the deletion and metabolic traits including serum fasting glucose or insulin, fasting and post-meal lipids, inflammatory markers, or sub-clinical markers of cardiovascular disease. In conclusion, we discovered a rare in-frame deletion in GOT1 gene, which inactivates cAST enzyme in the Old Order Amish. This finding will help us to understand structure and function of the enzyme and would be useful for predicting serum AST levels.

摘要

我们对 866 名阿米什人遗传与表型干预心脏研究参与者的血清天冬氨酸氨基转移酶(AST)活性进行了全基因组关联研究,发现 AST 活性与位于 10q24.1 染色体上的一组单核苷酸多态性显著相关(峰关联为 rs17109512;P=2.80E-14),该区域靠近编码细胞质 AST(cAST)的 GOT1 基因。对 GOT1 的测序揭示了基因中第 389 位编码天冬酰胺的三个核酸的无义缺失 c.1165_1167delAAC(p.Asn389del)。与常见等位基因的纯合子相比,缺失携带者的 AST 活性水平显著降低(平均值±标准差:10.0±2.8 与 18.8±5.2 U l(-1);P=2.80E-14)。在其他阿米什样本(n=1932)中对缺失进行进一步基因分型,确定了另外 20 个携带者(次要等位基因频率(MAF)=0.0052)。在 647 名外婚白种人中未检测到缺失。第 389 位密码子的天冬酰胺在已知的哺乳动物 cAST 中是保守的。野生型和突变型 cAST 的瞬时转染表明,突变型 cAST 蛋白在细胞中几乎无法检测到。此外,即使在校正 cAST 表达后,突变型 cAST 的酶活性也明显降低。值得注意的是,我们没有发现该缺失与包括血清空腹血糖或胰岛素、空腹和餐后脂质、炎症标志物或心血管疾病的亚临床标志物在内的代谢特征之间存在任何关联。总之,我们在 GOT1 基因中发现了一种罕见的无义缺失,该缺失使 Old Order Amish 中的 cAST 酶失活。这一发现将帮助我们了解酶的结构和功能,并有助于预测血清 AST 水平。

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