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药物基因组学下一代 DNA 测序:从 和 中鉴定和功能特征未知意义的变体中吸取的教训。

Pharmacogenomic Next-Generation DNA Sequencing: Lessons from the Identification and Functional Characterization of Variants of Unknown Significance in and .

机构信息

Departments of Molecular Pharmacology and Experimental Therapeutics (S.D., I.M., M.-F.H., L.W., R.M.W., J.M.R.) and Health Sciences Research (N.B.L., S.J.B.), Personalized Genomics Laboratory, Department of Laboratory Medicine and Pathology (A.M.M., J.L.B.), and Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic Graduate School of Biomedical Sciences (D.R.N.), Mayo Clinic, Rochester, Minnesota; and Human Genome Sequencing Center, Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas (S.E.S.).

Departments of Molecular Pharmacology and Experimental Therapeutics (S.D., I.M., M.-F.H., L.W., R.M.W., J.M.R.) and Health Sciences Research (N.B.L., S.J.B.), Personalized Genomics Laboratory, Department of Laboratory Medicine and Pathology (A.M.M., J.L.B.), and Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic Graduate School of Biomedical Sciences (D.R.N.), Mayo Clinic, Rochester, Minnesota; and Human Genome Sequencing Center, Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas (S.E.S.)

出版信息

Drug Metab Dispos. 2019 Apr;47(4):425-435. doi: 10.1124/dmd.118.084269. Epub 2019 Feb 11.

Abstract

and are highly polymorphic pharmacogenes; however, clinically actionable genetic variability in drug metabolism due to these genes has been limited to a few common alleles. The identification and functional characterization of less-common open reading frame sequence variation might help to individualize therapy with drugs that are substrates for the enzymes encoded by these genes. The present study identified seven uncharacterized variants each in and using next-generation sequence data for 1013 subjects, and functionally characterized the encoded proteins. Constructs were created and transiently expressed in COS-1 cells for the assay of protein concentration and enzyme activities using fluorometric substrates and liquid chromatography- tandem mass spectrometry with tolbutamide () and (S)-mephenytoin () as prototypic substrates. The results were compared with the SIFT, Polyphen, and Provean functional prediction software programs. Cytochrome P450 oxidoreductase (CPR) activities were also determined. Positive correlations were observed between protein content and fluorometric enzyme activity for variants of ( < 0.05) and ( < 0.0005). However, 709G>C and 65A>G activities were much lower than predicted based on protein content. Substrate intrinsic clearance values for 218C>T, 343A>C, and 337G>A, 518C>T, 556C>T, and 557G>A were less than 25% of wild-type allozymes. CPR activity levels were similar for all variants. In summary, sequencing of and in 1013 subjects identified low-frequency variants that had not previously been functionally characterized. In silico predictions were not always consistent with functional assay results. These observations emphasize the need for high-throughput methods for pharmacogene variant mutagenesis and functional characterization.

摘要

和 是高度多态性的药物代谢酶基因;然而,由于这些基因导致的药物代谢临床可操作的遗传变异性一直局限于少数常见等位基因。较少见的开放阅读框序列变异的鉴定和功能特征可能有助于根据这些基因编码的酶的底物对药物进行个体化治疗。本研究使用 1013 个个体的下一代测序数据,分别在 和 中鉴定了 7 个未表征的变体,并对编码的蛋白质进行了功能特征分析。构建了这些变体的构建体,并在 COS-1 细胞中瞬时表达,使用荧光底物和液相色谱-串联质谱法,以甲苯磺丁脲()和(S)-美芬妥因()为原型底物,测定蛋白质浓度和酶活性。将结果与 SIFT、Polyphen 和 Provean 功能预测软件程序进行了比较。还测定了细胞色素 P450 氧化还原酶(CPR)的活性。观察到 和 变体的蛋白含量与荧光酶活性之间存在正相关(<0.05)和(<0.0005)。然而,709G>C 和 65A>G 的活性明显低于基于蛋白含量的预测值。 218C>T、343A>C 和 337G>A、518C>T、556C>T 和 557G>A 的底物固有清除率值小于野生型同工酶的 25%。所有变体的 CPR 活性水平相似。总之,在 1013 个个体中对 和 进行测序,鉴定了以前未进行功能表征的低频变体。计算机预测并不总是与功能测定结果一致。这些观察结果强调了需要高通量方法来进行药物代谢酶变体突变和功能特征分析。

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