Key Laboratory of Freshwater Biodiversity Conservation, Ministry of Agriculture and Rural Affairs, Yangtze River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Wuhan 430223, China.
Department of Genetics, Wuhan University, Wuhan 430071, China.
Int J Mol Sci. 2021 Feb 19;22(4):2054. doi: 10.3390/ijms22042054.
Lead (Pb) is one of the major heavy metals that are toxic to vertebrates and usually considered as environmental pollutants. ABCC4/MRP4 is an organic anion transporter that mediates cellular efflux of a wide range of exogenous and endogenous compounds such as cyclic nucleotides and anti-cancer drugs; however, it remains unclear whether ABCC4 and its orthologs function in the detoxification and excretion of toxic lead. In this study, we found that the transcriptional and translational expression of zebrafish was significantly induced under lead exposure in developing zebrafish embryos and adult tissues. Overexpression of zebrafish Abcc4 markedly decreased the cytotoxicity and accumulation of lead in pig renal proximal tubule cell line (LLC-PK1 cells). To further understand the functions of zebrafish Abcc4 in lead detoxification, the clustered regularly interspaced palindromic repeats (CRISPR)/Cas9 system was used to create an mutant zebrafish line. In comparison with the wild-type (WT) zebrafish, the mutants showed a higher death rate and lead accumulation upon exposure to lead. Furthermore, a stable -transgenic zebrafish line was successfully generated, which exerted stronger ability to detoxify and excrete lead than WT zebrafish. These findings indicate that zebrafish Abcc4 plays a crucial role in lead detoxification and cellular efflux and could be used as a potential biomarker to monitor lead contamination in a water environment.
铅(Pb)是对脊椎动物有毒的主要重金属之一,通常被认为是环境污染物。ABCC4/MRP4 是一种有机阴离子转运体,介导细胞外排广泛的外源性和内源性化合物,如环核苷酸和抗癌药物;然而,ABCC4 及其同源物是否在有毒铅的解毒和排泄中起作用仍不清楚。在这项研究中,我们发现斑马鱼在发育中的斑马鱼胚胎和成年组织中暴露于铅下时,其的转录和翻译表达显著诱导。斑马鱼 Abcc4 的过表达显着降低了猪肾近端小管细胞系(LLC-PK1 细胞)中铅的细胞毒性和积累。为了进一步了解斑马鱼 Abcc4 在铅解毒中的功能,使用了成簇规律间隔短回文重复序列 (CRISPR)/Cas9 系统来创建 突变斑马鱼系。与野生型(WT)斑马鱼相比,突变体在暴露于铅时表现出更高的死亡率和铅积累。此外,成功产生了稳定的 -转基因斑马鱼系,其解毒和排泄铅的能力比 WT 斑马鱼更强。这些发现表明斑马鱼 Abcc4 在铅解毒和细胞外排中起关键作用,可作为监测水环境中铅污染的潜在生物标志物。