Bjerre Ditte, Rasmussen Henrik B
aInstitute of Biological Psychiatry, Mental Health Centre Sct. Hans, Copenhagen University Hospital bDepartment of Science and Environment, Roskilde University, Roskilde, Denmark.
Pharmacogenet Genomics. 2017 Apr;27(4):155-158. doi: 10.1097/FPC.0000000000000267.
Carboxylesterase 1 (CES1) is implicated in the metabolism of several commonly used drugs and other xenobiotics. The gene encoding this enzyme, CES1, is duplicated in some individuals. The original gene copy is called CES1A1. The duplicated version, CES1A2, is a hybrid of CES1A1 and the CES1-related pseudogene, CES1P1. Variants of CES1A2 with a weak and a strong promoter, respectively, have been reported. In addition, there are chimeric subtypes of CES1A1 that contain a segment of CES1P1. Collectively, this represents challenges to the genotyping of CES1 that previous procedures have had difficulties in solving, frequently leading to loss of specificity and inaccurate genotyping. Here, we report a novel and specific procedure that can selectively amplify CES1A1 and CES1A2 and accurately determine their variants. This procedure may be useful for personalization of treatments with drugs metabolized by CES1.
羧酸酯酶1(CES1)参与多种常用药物及其他外源性物质的代谢。编码该酶的基因CES1在一些个体中存在重复。原始基因拷贝称为CES1A1。重复版本CES1A2是CES1A1与CES1相关假基因CES1P1的杂交体。分别报道了具有弱启动子和强启动子的CES1A2变体。此外,还有包含CES1P1片段的CES1A1嵌合亚型。总体而言,这给CES1基因分型带来了挑战,而之前的方法难以解决这些问题,常常导致特异性丧失和基因分型不准确。在此,我们报告了一种新颖且特异的方法,该方法可以选择性地扩增CES1A1和CES1A2并准确确定它们的变体。该方法可能有助于对由CES1代谢的药物进行个性化治疗。