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Human Liver Methionine Cycle: MAT1A and GNMT Gene Resequencing Functional Genomics and Hepatic Genotype-Phenotype Correlation

机译:人肝蛋氨酸周期:MAT1A和GNMT基因重测序功能基因组学和肝基因型-表型的相关性。

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摘要

The “methionine cycle” plays a critical role in the regulation of concentrations of (S)-adenosylmethionine (AdoMet), the major biological methyl donor. We set out to study sequence variation in genes encoding the enzyme that synthesizes AdoMet in liver, methionine adenosyltransferase 1A (MAT1A) and the major hepatic AdoMet using enzyme, glycine N-methyltransferase (GNMT), as well as functional implications of that variation. We resequenced MAT1A and GNMT using DNA from 288 subjects of three ethnicities, followed by functional genomic and genotype-phenotype correlation studies performed with 268 hepatic biopsy samples. We identified 44 and 42 polymorphisms in MAT1A and GNMT, respectively. Quantitative Western blot analyses for the human liver samples showed large individual variation in MAT1A and GNMT protein expression. Genotype-phenotype correlation identified two genotyped single-nucleotide polymorphisms (SNPs), reference SNP (rs) 9471976 (corrected p = 3.9 × 10−10) and rs11752813 (corrected p = 1.8 × 10−5), and 42 imputed SNPs surrounding GNMT that were significantly associated with hepatic GNMT protein levels (corrected p values < 0.01). Reporter gene studies showed that variant alleles for both genotyped SNPs resulted in decreased transcriptional activity. Correlation analyses among hepatic protein levels for methionine cycle enzymes showed significant correlations between GNMT and MAT1A (p = 1.5 × 10−3) and between GNMT and betaine homocysteine methyltransferase (p = 1.6 × 10−7). Our discovery of SNPs that are highly associated with hepatic GNMT protein expression as well as the “coordinate regulation” of methionine cycle enzyme protein levels provide novel insight into the regulation of this important human liver biochemical pathway.
机译:“甲硫氨酸循环”在主要生物甲基供体(S)-腺苷甲硫氨酸(AdoMet)浓度的调节中起着关键作用。我们着手研究使用酶,甘氨酸N-甲基转移酶(GNMT)编码在肝脏中合成AdoMet的酶,蛋氨酸腺苷基转移酶1A(MAT1A)和主要肝AdoMet的基因的序列变异,以及该变异的功能含义。我们使用来自三个种族的288名受试者的DNA对MAT1A和GNMT进行了重测序,然后对268例肝活检样本进行了功能基因组和基因型-表型相关性研究。我们分别在MAT1A和GNMT中鉴定出44和42个多态性。对人肝脏样品的定量蛋白质印迹分析表明,MAT1A和GNMT蛋白表达存在较大的个体差异。基因型与表型的相关性鉴定出两个基因型单核苷酸多态性(SNP),参考SNP(rs)9471976(校正后的p = 3.9×10 −10 )和rs11752813(校正后的p = 1.8×10 ) -5 ),并且在GNMT周围有42个估算的SNP与肝GNMT蛋白水平显着相关(校正后的p值<0.01)。记者基因研究表明,两种基因型SNP的变异等位基因均导致转录活性降低。蛋氨酸循环酶的肝蛋白水平之间的相关性分析显示,GNMT与MAT1A之间(p = 1.5×10 -3 )和GNMT与甜菜碱同型半胱氨酸甲基转移酶(p = 1.6×10 - 7 )。我们与肝GNMT蛋白表达以及蛋氨酸循环酶蛋白水平的“协调调节”高度相关的SNP的发现,为这一重要的人类肝脏生化途径的调节提供了新颖的见解。

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