Qi Xiaozhe, Wagenaar Els, Xu Wentao, Huang Kunlun, Schinkel Alfred H
Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science & Nutritional Engineering, China Agricultural University, Beijing 100083, China.
Division of Molecular Oncology, The Netherlands Cancer Institute, Plesmanlaan 121, 1066CX Amsterdam, The Netherlands.
Toxicol Appl Pharmacol. 2017 Aug 15;329:18-25. doi: 10.1016/j.taap.2017.05.022. Epub 2017 May 19.
Ochratoxin A (OTA) is a fungal secondary metabolite that can contaminate various foods. OTA has several toxic effects like nephrotoxicity, hepatotoxicity, and neurotoxicity in different animal species, but its mechanisms of toxicity are still unclear. How OTA accumulates in kidney, liver, and brain is as yet unknown, but transmembrane transport proteins are likely involved. We studied transport of OTA in vitro, using polarized MDCKII cells transduced with cDNAs of the efflux transporters mouse (m)Bcrp, human (h)BCRP, mMrp2, or hMRP2, and HEK293 cells overexpressing cDNAs of the human uptake transporters OATP1A2, OATP1B1, OATP1B3, or OATP2B1 at pH7.4 and 6.4. MDCKII-mBcrp cells were more resistant to OTA toxicity than MDCKII parental and hBCRP-transduced cells. Transepithelial transport experiments showed some apically directed transport by MDCKII-mBcrp cells at pH7.4, whereas both mBcrp and hBCRP clearly transported OTA at pH6.4. There was modest transport of OTA by mMrp2 and hMRP2 only at pH6.4. OATP1A2 and OATP2B1 mediated uptake of OTA both at pH7.4 and 6.4, but OATP1B1 only at pH7.4. There was no detectable transport of OTA by OATP1B3. Our data indicate that human BCRP and MRP2 can mediate elimination of OTA from cells, thus reducing OTA toxicity. On the other hand, human OATP1A2, OATP1B1, and OATP2B1 can mediate cellular uptake of OTA, which could aggravate OTA toxicity.
赭曲霉毒素A(OTA)是一种可污染多种食品的真菌次级代谢产物。OTA在不同动物物种中具有多种毒性作用,如肾毒性、肝毒性和神经毒性,但其毒性机制仍不清楚。OTA如何在肾脏、肝脏和大脑中蓄积尚不清楚,但可能涉及跨膜转运蛋白。我们在体外研究了OTA的转运,使用转导了外排转运蛋白小鼠(m)Bcrp、人(h)BCRP、mMrp2或hMRP2的cDNA的极化MDCKII细胞,以及在pH7.4和6.4条件下过表达人摄取转运蛋白OATP1A2、OATP1B1、OATP1B3或OATP2B1的cDNA的HEK293细胞。MDCKII-mBcrp细胞比MDCKII亲本细胞和转导了hBCRP的细胞对OTA毒性更具抗性。跨上皮转运实验表明,MDCKII-mBcrp细胞在pH7.4时存在一些顶端定向转运,而mBcrp和hBCRP在pH6.4时均能明显转运OTA。mMrp2和hMRP2仅在pH6.4时对OTA有适度转运。OATP1A2和OATP2B1在pH7.4和6.4时均介导OTA的摄取,但OATP1B1仅在pH7.4时介导。未检测到OATP1B3对OTA的转运。我们的数据表明,人BCRP和MRP2可介导细胞内OTA的消除,从而降低OTA毒性。另一方面,人OATP1A2、OATP1B1和OATP2B1可介导细胞对OTA的摄取,这可能会加重OTA毒性。