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Structure of a bacterial multidrug ABC transporter.

机译:细菌多药ABC转运蛋白的结构。

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Multidrug transporters of the ABC family facilitate the export of diverse cytotoxic drugs across cell membranes. This is clinically relevant, as tumour cells may become resistant to agents used in chemotherapy. To understand the molecular basis of this process, we have determined the 3.0 A crystal structure of a bacterial ABC transporter (Sav1866) from Staphylococcus aureus. The homodimeric protein consists of 12 transmembrane helices in an arrangement that is consistent with cross-linking studies and electron microscopic imaging of the human multidrug resistance protein MDR1, but critically different from that reported for the bacterial lipid flippase MsbA. The observed, outward-facing conformation reflects the ATP-bound state, with the two nucleotide-binding domains in close contact and the two transmembrane domains forming a central cavity--presumably the drug translocation pathway--that is shielded from the inner leaflet of the lipid bilayer and from the cytoplasm, but exposed to the outer leaflet and the extracellular space.
机译:ABC系列的多药转运蛋白促进了多种细胞毒性药物跨细胞膜的输出。这是临床相关的,因为肿瘤细胞可能对化学疗法中使用的药物产生抗性。为了解此过程的分子基础,我们确定了金黄色葡萄球菌的细菌ABC转运蛋白(Sav1866)的3.0 A晶体结构。同源二聚体蛋白由12个跨膜螺旋组成,其排列与人多药耐药性蛋白MDR1的交联研究和电子显微镜成像一致,但与报道的细菌脂质翻转酶MsbA截然不同。观察到的向外构象反映了ATP结合状态,两个核苷酸结合结构域紧密接触,两个跨膜结构域形成中心腔-可能是药物易位途径-与内在小叶屏蔽。脂质双层和来自细胞质,但暴露于外部小叶和细胞外空间。

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