van de Wetering Koen, Feddema Wouter, Helms J Bernd, Brouwers Jos F, Borst Piet
Division of Molecular Biology, The Netherlands Cancer Institute, Amsterdam, The Netherlands.
Gastroenterology. 2009 Nov;137(5):1725-35. doi: 10.1053/j.gastro.2009.06.052. Epub 2009 Jul 3.
BACKGROUND & AIMS: The physiologic function of the efflux transporter Multidrug Resistance Protein 3 (MRP3) remains poorly defined. In vitro, MRP3 transports several glucuronidated compounds, but the compounds transported under physiologic conditions are unknown. Knowledge of the compounds transported by MRP3 in vivo would greatly contribute to the elucidation of the physiologic function of this transport protein.
We used targeted metabolomics to identify substrates of MRP3 in vivo. Liquid chromatography coupled to mass spectrometry was used to specifically screen in plasma and urine of mice for compounds containing a glucuronic acid moiety.
We found that several highly abundant compounds containing a glucuronic acid moiety have a much lower abundance in plasma and urine of Mrp3((-/-)) than of wild-type mice. We identified these as phytoestrogen-glucuronides, and we show that MRP3 transports these compounds at high rates and with high affinity in vitro.
We have identified the efflux transporter MRP3 as a major factor in the disposition of phytoestrogens, a class of compounds to which mammals are exposed via food of plant origin. Our targeted metabolomics approach is not restricted to MRP3 but applicable to many other transport proteins for which knockout mouse models are available. Similar screens could be developed for sulpho- and glutathione-conjugates, further increasing the potential of identifying new physiologic transporter substrates.
外排转运体多药耐药蛋白3(MRP3)的生理功能仍不清楚。在体外,MRP3可转运多种葡萄糖醛酸化化合物,但在生理条件下所转运的化合物尚不清楚。了解MRP3在体内转运的化合物将极大地有助于阐明这种转运蛋白的生理功能。
我们使用靶向代谢组学来鉴定MRP3在体内的底物。液相色谱-质谱联用技术用于在小鼠血浆和尿液中特异性筛选含有葡萄糖醛酸部分的化合物。
我们发现几种高丰度的含有葡萄糖醛酸部分的化合物在Mrp3基因敲除小鼠的血浆和尿液中的丰度远低于野生型小鼠。我们将这些化合物鉴定为植物雌激素葡萄糖醛酸苷,并表明MRP3在体外能以高速率和高亲和力转运这些化合物。
我们已确定外排转运体MRP3是植物雌激素代谢中的一个主要因素,植物雌激素是一类哺乳动物通过植物性食物接触到的化合物。我们的靶向代谢组学方法不仅适用于MRP3,还适用于许多其他有基因敲除小鼠模型的转运蛋白。对于硫酸化和谷胱甘肽结合物也可开展类似的筛选,从而进一步提高鉴定新的生理转运体底物的可能性。