首页> 美国卫生研究院文献>Biochemical Journal >Arginine-482 is not essential for transport of antibiotics primary bile acids and unconjugated sterols by the human breast cancer resistance protein (ABCG2)
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Arginine-482 is not essential for transport of antibiotics primary bile acids and unconjugated sterols by the human breast cancer resistance protein (ABCG2)

机译:精氨酸482对于人类乳腺癌抗性蛋白(ABCG2)转运抗生素一级胆汁酸和未结合的固醇不是必需的

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摘要

The human BCRP (breast cancer resistance protein, also known as ABCG2) is an ABC (ATP-binding cassette) transporter that extrudes various anticancer drugs from cells, causing multidrug resistance. To study the molecular determinants of drug specificity of BCRP in more detail, we have expressed wild-type BCRP (BCRP-R) and the drug-selected cancer cell line-associated R482G (Arg482→Gly) mutant BCRP (BCRP-G) in Lactococcus lactis. Drug resistance and the rate of drug efflux in BCRP-expressing cells were proportional to the expression level of the protein and affected by the R482G mutation, pointing to a direct role of BCRP in drug transport in L. lactis. In agreement with observations in mammalian cells, the BCRP-R-mediated transport of the cationic substrates rhodamine 123 and tetramethylrosamine was significantly decreased compared with the activity of BCRP-G. In addition, BCRP-R showed an enhanced interaction with the anionic anticancer drug methotrexate when compared with BCRP-G, suggesting that structure/substrate specificity relationships in BCRP, as observed in eukaryotic expression systems, are maintained in prokaryotic L. lactis. Interestingly, BCRP-R exhibited a previously unestablished ability to transport antibiotics, unconjugated sterols and primary bile acids in L. lactis, for which the R482G mutation was not critical. Since Arg482 is predicted to be present in the intracellular domain of BCRP, close to transmembrane segment 3, our results point to a role of this residue in electrostatic interactions with charged substrates including rhodamine 123 and methotrexate. Since unconjugated sterols are neutral molecules and bile acids and many antibiotics are engaged in protonation/deprotonation equilibria at physiological pH, our observations may point either to a lack of interaction between Arg482 and neutral or neutralized moieties in these substrates during transport or to the interaction of these substrates with regions in BCRP not including Arg482.
机译:人BCRP(乳腺癌耐药蛋白,也称为ABCG2)是一种ABC(ATP结合盒)转运蛋白,可从细胞中挤出多种抗癌药物,从而引起多药耐药性。为了更详细地研究BCRP药物特异性的分子决定因素,我们已经表达了野生型BCRP(BCRP-R)和药物选择的癌细胞系相关的R482G(Arg 482 →Gly)乳酸乳球菌中的突变BCRP(BCRP-G)。 BCRP表达细胞中的耐药性和药物外排率与该蛋白的表达水平成正比,并受R482G突变的影响,这表明BCRP在乳酸乳球菌的药物转运中具有直接作用。与在哺乳动物细胞中观察到的一致,与BCRP-G的活性相比,BCRP-R介导的阳离子底物若丹明123和四甲基罗斯胺的转运显着降低。另外,当与BCRP-G相比时,BCRP-R显示出与阴离子抗癌药甲氨蝶呤的增强的相互作用,表明如在真核表达系统中观察到的那样,在原核乳杆菌中保持了BCRP中的结构/底物特异性关系。有趣的是,BCRP-R在乳酸乳球菌中显示出先前无法确定的转运抗生素,未结合的固醇和伯胆汁酸的能力,对此R482G突变并不重要。由于预计Arg 482 存在于BCRP的细胞内结构域中,靠近跨膜区段3,因此我们的结果表明该残基在与带电底物(如罗丹明123和甲氨蝶呤)的静电相互作用中起作用。由于未结合的固醇是中性分子和胆汁酸,并且许多抗生素在生理pH下参与质子化/去质子化平衡,因此我们的观察结果可能表明Arg 482 与其中的中性或中性部分之间缺乏相互作用运输过程中的底物或这些底物与BCRP中不包含Arg 482 的区域的相互作用。

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