Key Laboratory of Biodiversity and Conservation of Aquatic Organism, Institute of Hydrobiology, Chinese Academy of Sciences, 7 Donghu Rd., Wuhan, Hubei 430072, PR China.
Comp Biochem Physiol C Toxicol Pharmacol. 2011 May;153(4):381-91. doi: 10.1016/j.cbpc.2011.01.002. Epub 2011 Jan 23.
Multidrug-resistance associated protein 2 (MRP2/ABCC2) plays crucial roles in bile formation and detoxification by transporting a wide variety of endogenous compounds and xenobiotics, but its functions in zebrafish (Danio rerio) remain to be characterized. In this study, we obtained the full-length cDNA of zebrafish abcc2, analyzed its expression in developing embryos and adult tissues, investigated its transcriptional response to heavy metals, and evaluated its roles in efflux of heavy metals including cadmium, mercury and lead. Zebrafish abcc2 gene is located on chromosome 13 and composed of 32 exons. The deduced polypeptide of zebrafish ABCC2 consists of 1567 amino acids and possesses most of functional domains and critical residues defined in human ABCC2. Zebrafish abcc2 gene is not maternally expressed and its earliest expression was detected in embryos at 72hpf. In larval zebrafish, abcc2 gene was found to be exclusively expressed in liver, intestine and pronephric tubules. In adult zebrafish, the highest expression of abcc2 gene was found in intestine followed by those in liver and kidney, while relative low expression was detected in brain and muscle. Expression of abcc2 in excretory organs including kidney, liver and intestine of zebrafish larvae was induced by exposure to 0.5μM mercury or 5μM lead. Moreover, exposure to 0.125-1μM of mercury or lead also significantly induced abcc2 expression in these excretory organs of adult zebrafish. Furthermore, overexpression of zebrafish ABCC2 in ZF4 cells and zebrafish embryos decreased the cellular accumulation of heavy metals including cadmium, mercury and lead as determined by MRE (metal responsive element)- or EPRE (electrophile response element)-driven luciferase reporters and atomic absorption spectrometry. These results suggest that zebrafish ABCC2/MRP2 is capable of effluxing heavy metals from cells and may play important roles in the detoxification of toxic metals.
多药耐药相关蛋白 2(MRP2/ABCC2)通过转运多种内源性化合物和外源性化合物在胆汁形成和解毒中发挥关键作用,但它在斑马鱼(Danio rerio)中的功能仍有待表征。在这项研究中,我们获得了斑马鱼 abcc2 的全长 cDNA,分析了其在发育胚胎和成年组织中的表达,研究了其对重金属的转录反应,并评估了其在包括镉、汞和铅在内的重金属外排中的作用。斑马鱼 abcc2 基因位于染色体 13 上,由 32 个外显子组成。斑马鱼 ABCC2 的推导多肽由 1567 个氨基酸组成,具有人类 ABCC2 中定义的大多数功能域和关键残基。斑马鱼 abcc2 基因不是母源性表达的,其最早的表达在 72hpf 的胚胎中检测到。在幼鱼中,abcc2 基因仅在肝脏、肠道和前肾小管中表达。在成年斑马鱼中,abcc2 基因的表达量最高的组织是肠道,其次是肝脏和肾脏,而在大脑和肌肉中的表达量相对较低。幼鱼肾脏、肝脏和肠道等排泄器官中 abcc2 的表达在暴露于 0.5μM 汞或 5μM 铅后被诱导。此外,暴露于 0.125-1μM 的汞或铅也显著诱导了成年斑马鱼这些排泄器官中 abcc2 的表达。此外,通过 MRE(金属反应元件)或 EPRE(亲电反应元件)驱动的荧光素酶报告基因和原子吸收光谱法,过表达斑马鱼 ABCC2 可减少包括镉、汞和铅在内的重金属在 ZF4 细胞和斑马鱼胚胎中的细胞积累。这些结果表明,斑马鱼 ABCC2/MRP2 能够将重金属从细胞中排出,可能在解毒有毒金属方面发挥重要作用。