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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Human phenylethanolamine N-methyltransferase pharmacogenomics: gene re-sequencing and functional genomics.
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Human phenylethanolamine N-methyltransferase pharmacogenomics: gene re-sequencing and functional genomics.

机译:人苯基乙醇胺N-甲基转移酶药物基因组学:基因重测序和功能基因组学。

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Phenylethanolamine N-methyltransferase (PNMT, EC2.1.1.28) catalyzes the N-methylation of norepinephrine to form epinephrine. As a step toward understanding the possible contribution of inheritance to individual variation in PNMT-catalyzed epinephrine formation, we 're-sequenced' the entire human PNMT gene, including the three exons, the introns and approximately 1 kb of the 5'-flanking region (5'-FR), using DNA samples from 60 African-American (AA) and 60 Caucasian-American (CA) subjects. Within the 3.5 kb re-sequenced, 18 single nucleotide polymorphisms (SNPs) were observed, including four non-synonymous coding SNPs (cSNPs) that resulted in the following alterations in encoded amino acid sequence: Asn9Ser, Thr98Ala, Arg112Cys and Ala175Thr. When constructs for the non-synonymous cSNPs were transiently expressed in COS-1 cells, the Ala98 allozyme displayed significantly lower levels of both activity and immunoreactive protein (p < 0.002) than did the wild-type (WT) enzyme due, at least in part, to accelerated protein degradation by a proteasome-mediated process. Luciferase reporter gene constructs were also created for the six common PNMT 5'-FR haplotypes observed. Significant differences were observed among haplotypes in their ability to drive transcription. These observations raise the possibility of inherited variation in the ability to form epinephrine from norepinephrine as a result of variant PNMT polymorphisms and haplotypes.
机译:苯乙醇胺N-甲基转移酶(PNMT,EC2.1.1.28)催化去甲肾上腺素的N-甲基化以形成肾上腺素。为了进一步了解遗传对PNMT催化的肾上腺素形成个体变异的可能贡献,我们对整个人类PNMT基因(包括三个外显子,内含子和5'侧翼区域的大约1 kb)进行了“重新测序”。 (5'-FR),使用来自60位非裔美国人(AA)和60位高加索裔美国人(CA)受试者的DNA样本。在3.5 kb的重新测序序列中,观察到18个单核苷酸多态性(SNP),包括四个非同义的编码SNP(cSNPs),它们导致了编码氨基酸序列的以下变化:Asn9Ser,Thr98Ala,Arg112Cys和Ala175Thr。当非同义cSNPs的构建体在COS-1细胞中瞬时表达时,Ala98同工酶的活性和免疫反应蛋白水平均显着低于野生型(WT)酶(p <0.002),这至少是由于部分是通过蛋白酶体介导的过程加速蛋白质降解。还为观察到的六种常见PNMT 5'-FR单倍型创建了荧光素酶报告基因基因构建体。单体型驱动转录的能力之间观察到显着差异。这些观察结果提出了由于变异的PNMT多态性和单倍型而从去甲肾上腺素形成肾上腺素的能力遗传变异的可能性。

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