Laboratory for Biology and Microbial Genetics, Department of Biochemical Engineering, Faculty of Food Technology and Biotechnology, University of Zagreb, Pierottijeva 6, 10000, Zagreb, Croatia,
Bull Environ Contam Toxicol. 2013 Oct;91(4):415-9. doi: 10.1007/s00128-013-1021-8. Epub 2013 Jun 7.
Multixenobiotic resistance (MXR) represents an important cellular detoxification mechanism in aquatic organisms as it provides them robustness toward natural and man-made contaminants. Several ABC transporters have major roles in the MXR phenotype - P-gp/ABCB1, MRP1-3/ABCC1-3 and BCRP/ABCG2. In this study, we identified the presence of ABC transporters involved in the MXR mechanism of Arbacia lixula and Paracentrotus lividus. AlABCB1/P-gp, AlABCC3/MRP3, AlABCC9/SUR-like and AlABCG-like transcripts were identified in A. lixula; and PlABCC1/P-gp, PlABCC3/MRP3, PlABCC5/MRP5, and PlABCC9/SUR-like transcripts in P. lividus. For each of the new partial sequences, we performed detailed phylogenetic and identity analysis as a first step toward full characterization and understanding of the ecotoxicological role of these ABC transporters.
多药耐药性 (MXR) 代表了水生生物中一种重要的细胞解毒机制,因为它使它们能够耐受自然和人为污染物。几种 ABC 转运蛋白在 MXR 表型中起主要作用-P-糖蛋白/ABCB1、MRP1-3/ABCC1-3 和 BCRP/ABCG2。在这项研究中,我们确定了参与棘皮动物 A. lixula 和 P. lividus 的 MXR 机制的 ABC 转运蛋白的存在。AlABCB1/P-gp、AlABCC3/MRP3、AlABCC9/SUR-like 和 AlABCG-like 转录本在 A. lixula 中被鉴定出来;而 PlABCC1/P-gp、PlABCC3/MRP3、PlABCC5/MRP5 和 PlABCC9/SUR-like 转录本在 P. lividus 中被鉴定出来。对于每个新的部分序列,我们进行了详细的系统发育和同一性分析,作为全面表征和理解这些 ABC 转运蛋白的生态毒理学作用的第一步。