Role of MRP4 and MRP5 in biology and chemotherapy.

AAPS PharmSci Pub Date : 2002-01-01 DOI:10.1208/ps040314
J Sampath, M Adachi, S Hatse, L Naesens, J Balzarini, R M Flatley, L H Matherly, J D Schuetz
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Abstract

Nucleotide efflux (especially cyclic nucleotides) from a variety of mammalian tissues, bacteria, and lower eukaryotes has been studied for several decades. However, the molecular identity of these nucleotide efflux transporters remained elusive, despite extensive knowledge of their kinetic properties and inhibitor profiles. Identification of the subfamily of adenosine triphosphate (ATP) binding cassette transporters, multidrug resistance protein (MRP) subfamily, permitted rapid advances because some recently identified MRP family members transport modified nucleotide analogs (ie, chemotherapeutic agents). We first identified, MRP4, based on its ability to efflux antiretroviral compounds, such as azidothymidine monophosphate (AZT-MP) and 9-(2-phosphonyl methoxyethyl) adenine (PMEA), in drug-resistant and also in transfected cell lines. MRP5, a close structural homologue of MRP4 also transported PMEA. MRP4 and MRP5 confer resistance to cytotoxic thiopurine nucleotides, and we demonstrate MRP4 expression varies among acute lymphoblastic leukemias, suggesting this as a factor in response to chemotherapy with these agents. The ability of MRP4 and MRP5 to transport 3',5'-cyclic adenosine monophosphate (cAMP) and 3',5'-cyclic guanosine monophosphate (cGMP) suggests they may play a biological role in cellular signaling by these nucleotides. Finally, we propose that MRP4 may also play a role in hepatic bile acid homeostasis because loss of the main bile acid efflux transporter, sister of P-glycoprotein (SPGP) aka bile-salt export pump (BSEP), leads to a strong compensatory upregulation in MRP4 expression. Cumulatively, these studies reveal that the ATP-binding cassette (ABC) transporters MRP4 and MRP5 have a unique role in biology and in chemotherapeutic response.

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MRP4 和 MRP5 在生物学和化疗中的作用。
几十年来,人们一直在研究哺乳动物各种组织、细菌和低等真核生物的核苷酸外流(尤其是环状核苷酸)。然而,尽管对这些核苷酸外流转运体的动力学特性和抑制剂特征有了广泛的了解,但它们的分子特征仍然难以确定。三磷酸腺苷(ATP)结合盒转运体亚家族--多药耐药性蛋白(MRP)亚家族的鉴定工作进展迅速,因为最近鉴定出的一些 MRP 家族成员可以转运修饰的核苷酸类似物(即化疗药物)。我们首先发现了 MRP4,因为它能在耐药细胞系和转染细胞系中外流抗逆转录病毒化合物,如单磷酸叠氮胸苷(AZT-MP)和 9-(2-膦酰甲氧基乙基)腺嘌呤(PMEA)。与 MRP4 结构相似的同源物 MRP5 也转运 PMEA。MRP4 和 MRP5 使细胞对细胞毒性硫嘌呤核苷酸产生抗药性,我们证明 MRP4 的表达在急性淋巴细胞白血病中存在差异,这表明这是影响这些药物化疗反应的一个因素。MRP4和MRP5转运3',5'-环单磷酸腺苷(cAMP)和3',5'-环单磷酸鸟苷(cGMP)的能力表明,它们可能在这些核苷酸的细胞信号传导中发挥生物学作用。最后,我们提出 MRP4 还可能在肝脏胆汁酸平衡中发挥作用,因为主要胆汁酸外排转运体--P-糖蛋白的姐妹(SPGP)又名胆盐输出泵(BSEP)--的缺失会导致 MRP4 表达的强代偿性上调。这些研究共同揭示了 ATP 结合盒(ABC)转运体 MRP4 和 MRP5 在生物学和化疗反应中的独特作用。
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