In silico and biological analyses of missense variants of the human biliary efflux transporter ABCC2: effects of novel rare missense variants

生物信息学 多药耐药蛋白2 错义突变 生物 运输机 流出 计算生物学 遗传学 ATP结合盒运输机 药理学 突变 基因
作者
Charlotte Kölz,Fabienne Z. Gaugaz,Niklas Handin,Elke Schaeffeler,Roman Tremmel,Stefan Winter,Kathrin Klein,Ulrich M. Zanger,Per Artursson,Matthias Schwab,Anne T. Nies
出处
期刊:British Journal of Pharmacology [Wiley]
标识
DOI:10.1111/bph.16508
摘要

Abstract Background and Purpose The ATP‐dependent biliary efflux transporter ABCC2, also known as multidrug resistance protein 2 (MRP2), is essential for the cellular disposition and detoxification of various xenobiotics including drugs as well as endogenous metabolites. Common functionally relevant ABCC2 genetic variants significantly alter drug responses and contribute to side effects. The aim of this study was to determine functional consequences of rare variants identified in subjects with European ancestry using in silico tools and in vitro analyses. Experimental Approach Targeted next‐generation sequencing of the ABCC2 gene was used to identify novel variants in European subjects (n = 143). Twenty‐six in silico tools were used to predict functional consequences. For biological validation, transport assays were carried out with membrane vesicles prepared from cell lines overexpressing the newly identified ABCC2 variants and estradiol β‐glucuronide and carboxydichlorofluorescein as the substrates. Key Results Three novel rare ABCC2 missense variants were identified (W227R, K402T, V489F). Twenty‐five in silico tools predicted W227R as damaging and one as potentially damaging. Prediction of functional consequences was not possible for K402T and V489F and for the common linked variants V1188E/C1515Y. Characterisation in vitro showed increased function of W227R, V489F and V1188E/C1515Y for both substrates, whereas K402T function was only increased for carboxydichlorofluorescein. Conclusion and Implications In silico tools were unable to accurately predict the substrate‐dependent increase in function of ABCC2 missense variants. In vitro biological studies are required to accurately determine functional activity to avoid misleading consequences for drug therapy.
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