首页> 外文OA文献 >Rhodamine 123 efflux transporter in Haloferax volcanii is induced when cultured under 'metabolic stress' by amino acids: the efflux system resembles that in a doxorubicin-resistant mutant.
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Rhodamine 123 efflux transporter in Haloferax volcanii is induced when cultured under 'metabolic stress' by amino acids: the efflux system resembles that in a doxorubicin-resistant mutant.

机译:在氨基酸的“代谢应激”条件下培养时,在Haloferax volcanii中的若丹明123外排转运蛋白被诱导:外排系统类似于抗阿霉素突变体中的外排系统。

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摘要

In this paper, we report that an archaebacterium, Haloferax volcanii, cultured in medium containing a large excess of amino acids showed very low levels of rhodamine 123 (RH123), which is a potent substrate for P-glycoprotein and the bacterial multidrug efflux transporter. This low level involved the active efflux of RH123 from the cells. The level of intracellular RH123 was increased and the efflux inhibited by the Ca2+-channel antagonist verapamil and also by various anti-cancer drugs. The efflux transporter was suggested to be ATP-driven. We have previously selected a mutant of H. volcanii with resistance to doxorubicin, by repeatedly culturing cells in 1.5 microM doxorubicin [Miyauchi, Komatsubara and Kamo (1992) Biochim. Biophys. Acta 1110, 144-150]. The acquisition of resistance to doxorubicin involves the active expulsion of lipophilic drugs such as RH123 and doxorubicin. It is notable that the drug spectrum and ATP-dependency of the amino acid-induced efflux transporter resemble those of the efflux transporter induced by doxorubicin.
机译:在本文中,我们报告说,在含有大量氨基酸的培养基中培养的古细菌Haloferax volcanii显示出极低的若丹明123(RH123)水平,这是P-糖蛋白和细菌多药外排转运蛋白的有效底物。该低水平涉及RH123从细胞的主动流出。 Ca 2+通道拮抗剂维拉帕米以及各种抗癌药会增加细胞内RH123的水平,并抑制其流出。外排转运蛋白被认为是ATP驱动的。我们以前通过在1.5 microM阿霉素中反复培养细胞来选择了对阿霉素具有抗性的H. volcanii突变体[Miyauchi,Komatsubara和Kamo(1992)Biochim。生物物理学。 Acta 1110,144-150]。对阿霉素的抗性的获得涉及亲脂性药物如RH123和阿霉素的主动排出。值得注意的是,氨基酸诱导的外排转运蛋白的药物光谱和ATP依赖性类似于阿霉素诱导的外排转运蛋白的光谱和ATP依赖性。

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