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On the energy-dependence of Hoechst 33342 transport by the ABC transporter LmrA.

机译:关于ABC转运车LmrA对Hoechst 33342转运车的能量依赖性。

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LmrA is an ATP-binding cassette (ABC) multidrug transporter from Lactococcus lactis, and is a structural homologue of the human multidrug resistance P-glycoprotein (ABCB1), the overexpression of which is associated with multidrug resistance in tumours. We recently observed that a truncated version of LmrA lacking the nucleotide-binding domain mediates a proton motive force-dependent ethidium transport reaction by catalyzing proton-ethidium symport. This finding raised the question whether proton motive force-dependent transport can also be observed for other drugs, and whether this reaction is also relevant for full-length LmrA. Furthermore, the observations on LmrA-MD raised the question whether ATP-dependent transport by LmrA in intact cells could be due to the activity of independent ABC transporters that might become upregulated in the lactococcal cells due to the overexpression of LmrA; the recently identified ABC multidrug transporter LmrCD was put forward as a possible candidate. Here, we investigated the energy coupling to the transport of the amphiphilic dye Hoechst 33342 in proteoliposomes containing purified LmrA. For this purpose, LmrA was obtained from lactococcal cells lacking the genomic lmrA and lmrCD genes, in which LmrA was expressed from a plasmid. To separate ATP-dependence from proton motive force-dependence, we also used mutant LmrA proteins, which were affected in their ability to hydrolyse ATP. Our studies in proteoliposomes demonstrate that LmrA can catalyze Hoechst 33342 transport independent of auxiliary proteins, in an ATP-dependent fashion and a transmembrane chemical proton gradient (interior acidic)-dependent fashion.
机译:LmrA是来自乳酸乳球菌的ATP结合盒(ABC)多药转运蛋白,是人多药抗性P-糖蛋白(ABCB1)的结构同源物,其过度表达与肿瘤中的多药抗性有关。我们最近观察到,缺少核苷酸结合结构域的LmrA的截短版本通过催化质子-乙锭共生介导质子原动力依赖的乙dium转运反应。这一发现提出了一个问题,即是否也可以在其他药物中观察到质子动力依赖的转运,以及这种反应是否也与全长LmrA有关。此外,对LmrA-MD的观察提出了一个问题,即完整细胞中LmrA的ATP依赖性转运是否可能归因于独立的ABC转运蛋白的活性,而该活性可能由于LmrA的过表达而在乳球菌细胞中上调。提出了最近确定的ABC多药转运蛋白LmrCD作为可能的候选药物。在这里,我们调查了能量耦合到两亲性染料Hoechst 33342在含有纯化的LmrA的蛋白脂质体中的运输。为此,从缺少基因组lmrA和lmrCD基因的乳球菌细胞中获得LmrA,其中从质粒表达LmrA。为了将ATP依赖性与质子动力依赖性分开,我们还使用了LmrA突变蛋白,这些蛋白的水解ATP能力受到影响。我们在蛋白脂质体中的研究表明,LmrA可以以ATP依赖性方式和跨膜化学质子梯度(内部酸性)依赖性方式催化Hoechst 33342转运,而与辅助蛋白无关。

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