Loeuillet Corinne, Weale Michael, Deutsch Samuel, Rotger Margalida, Soranzo Nicole, Wyniger Josiane, Lettre Guillaume, Dupré Yann, Thuillard Delphine, Beckmann Jacques S, Antonarakis Stylianos E, Goldstein David B, Telenti Amalio
Institute of Microbiology, University Hospital, Lausanne, Switzerland.
Pharmacogenet Genomics. 2007 Nov;17(11):951-9. doi: 10.1097/FPC.0b013e3282eff934.
The ABCB1 (MDR1) gene, encoding the transporter P-glycoprotein, is known to act on a broad range of prescription medicines. For this reason a large number of studies have assessed the functional consequences of variation in this gene. Particular attention has focused on the ABCB1_3435C>T polymorphism, an exonic variant resulting in a synonymous change. This variant has been associated with mRNA, protein and serum levels, and with responses to a number of medicines. The results of association studies have, however, been variable and it is not currently clear whether this polymorphism is functional or is in linkage disequilibrium with functionally distinct alleles.
To identify functional variation in the ABCB1 gene we assessed allelic imbalance by pyrosequencing cDNA from 80 lymphoblastoid B cell lines from the Centre d'Etude du Polymorphisme Humain (CEPH) collection, including 74 individuals heterozygous for 3435C>T. We found that the degree of ABCB1 allelic imbalance differed among B-cell lines. In an effort to fine-map variants that influence the proportion of the two allelic mRNA species we genotyped representative common variations near the 3435C>T polymorphism by using a tagging single nucleotide polymorphism (SNP) approach. In one approach, we assessed in segregating families the impact of cis-acting variants on mRNA levels by using allelic imbalance as the phenotype in a regression analysis that distinguishes the coupling arrangements (phase) among alleles. In a second approach, we assessed allelic imbalance levels in lymphoblastoid B-cell lines from unrelated HapMap individuals, and performed an association using tagSNPs in a 5-Mb region surrounding the gene. Two potential cis-acting variants, a promoter rs28656907/rs28373093 dinucleotide polymorphism (P=0.007) and the rs10245483 SNP (P=0.0003) located 2 Mb upstream from the gene, were predictors of ABCB1 expression.
The study outlines a general experimental approach for fine mapping gene variants that influence mRNA expression by using cultured cell lines.
ABCB1(MDR1)基因编码转运蛋白P-糖蛋白,已知其作用于多种处方药。因此,大量研究评估了该基因变异的功能后果。特别关注的是ABCB1_3435C>T多态性,这是一种外显子变异,导致同义变化。该变异与mRNA、蛋白质和血清水平以及对多种药物的反应有关。然而,关联研究的结果并不一致,目前尚不清楚这种多态性是否具有功能性,或者是否与功能不同的等位基因处于连锁不平衡状态。
为了鉴定ABCB1基因的功能变异,我们通过焦磷酸测序来自人类多态性研究中心(CEPH)收集的80个淋巴母细胞B细胞系的cDNA来评估等位基因不平衡,其中包括74个3435C>T杂合个体。我们发现ABCB1等位基因不平衡的程度在B细胞系中有所不同。为了精细定位影响两种等位基因mRNA种类比例的变异,我们使用标签单核苷酸多态性(SNP)方法对3435C>T多态性附近的代表性常见变异进行基因分型。在一种方法中,我们在分离的家系中通过使用等位基因不平衡作为回归分析中的表型来评估顺式作用变异对mRNA水平的影响,该回归分析区分等位基因之间的耦合排列(相位)。在第二种方法中,我们评估了来自无关的HapMap个体的淋巴母细胞B细胞系中的等位基因不平衡水平,并使用基因周围5 Mb区域中的标签SNP进行关联分析。两个潜在的顺式作用变异,一个启动子rs28656907/rs28373093二核苷酸多态性(P = 0.007)和位于基因上游2 Mb的rs10245483 SNP(P = 0.0003),是ABCB1表达的预测因子。
该研究概述了一种通过使用培养细胞系精细定位影响mRNA表达的基因变异的通用实验方法。