Wang Yimei, Tu Mei-Juan, Yu Ai-Ming
Department of Biochemistry and Molecular Medicine, School of Medicine, University of California at Davis, Sacramento, CA, United States.
Front Pharmacol. 2024 Jul 24;15:1423416. doi: 10.3389/fphar.2024.1423416. eCollection 2024.
ATP-binding cassette (ABC) transporters are transmembrane proteins expressed commonly in metabolic and excretory organs to control xenobiotic or endobiotic disposition and maintain their homeostasis. Changes in ABC transporter expression may directly affect the pharmacokinetics of relevant drugs involving absorption, distribution, metabolism, and excretion (ADME) processes. Indeed, overexpression of efflux ABC transporters in cancer cells or bacteria limits drug exposure and causes therapeutic failure that is known as multidrug resistance (MDR). With the discovery of functional noncoding microRNAs (miRNAs) produced from the genome, many miRNAs have been revealed to govern posttranscriptional gene regulation of ABC transporters, which shall improve our understanding of complex mechanism behind the overexpression of ABC transporters linked to MDR. In this article, we first overview the expression and localization of important ABC transporters in human tissues and their clinical importance regarding ADME as well as MDR. Further, we summarize miRNA-controlled posttranscriptional gene regulation of ABC transporters and effects on ADME and MDR. Additionally, we discuss the development and utilization of novel bioengineered miRNA agents to modulate ABC transporter gene expression and subsequent influence on cellular drug accumulation and chemosensitivity. Findings on posttranscriptional gene regulation of ABC transporters shall not only improve our understanding of mechanisms behind variable ADME but also provide insight into developing new means towards rational and more effective pharmacotherapies.
ATP结合盒(ABC)转运蛋白是跨膜蛋白,在代谢和排泄器官中普遍表达,以控制外源性或内源性物质的处置并维持其体内平衡。ABC转运蛋白表达的变化可能直接影响相关药物的药代动力学,涉及吸收、分布、代谢和排泄(ADME)过程。实际上,癌细胞或细菌中外排ABC转运蛋白的过表达会限制药物暴露并导致治疗失败,这被称为多药耐药性(MDR)。随着基因组产生的功能性非编码微小RNA(miRNA)的发现,许多miRNA已被揭示可调控ABC转运蛋白的转录后基因表达,这将增进我们对与MDR相关的ABC转运蛋白过表达背后复杂机制的理解。在本文中,我们首先概述重要ABC转运蛋白在人体组织中的表达和定位及其在ADME以及MDR方面的临床重要性。此外,我们总结miRNA对ABC转运蛋白的转录后基因调控及其对ADME和MDR的影响。另外,我们讨论新型生物工程miRNA制剂的开发和利用,以调节ABC转运蛋白基因表达及其对细胞药物蓄积和化疗敏感性的后续影响。关于ABC转运蛋白转录后基因调控的研究结果不仅将增进我们对ADME变异背后机制的理解,还将为开发合理且更有效的药物治疗新方法提供见解。