Department of Neurosciences, University of California, San Diego, 9500 Gilman Drive, La Jolla, San Diego, CA 92093-0505. USA,
Cell Biochem Biophys. 2012 Jul;63(3):223-34. doi: 10.1007/s12013-012-9358-x.
Human copper transporter 1 (hCTR1) is the major high affinity copper influx transporter in mammalian cells that also mediates uptake of the cancer chemotherapeutic agent cisplatin. A low resolution structure of hCTR1 determined by cryoelectron microscopy was recently published. Several protein structure simulation techniques were used to create an all-atom model of this important transporter using the low resolution structure as a starting point. The all-atom model provides new insights into the roles of specific residues of the N-terminal extracellular domain, the intracellular loop, and C-terminal region in metal ion transport. In particular, the model demonstrates that the central region of the pore contains four sets of methionine triads in the intramembranous region. The structure confirms that two triads of methionine residues delineate the intramembranous region of the transporter, and further identifies two additional methionine triads that are located in the extracellular N-terminal part of the transporter. Together, the four triads create a structure that promotes stepwise transport of metal ions into and then through the intramembranous channel of the transporter via transient thioether bonds to methionine residues. Putative copper-binding sites in the hCTR1 trimer were identified by a program developed by us for prediction of metal-binding sites. These sites correspond well with the known effects of mutations on the ability of the protein to transport copper and cisplatin.
人铜转运蛋白 1(hCTR1)是哺乳动物细胞中主要的高亲和力铜输入转运蛋白,它也介导癌症化疗药物顺铂的摄取。最近发表了一篇使用低温电子显微镜测定的 hCTR1 的低分辨率结构的论文。使用几种蛋白质结构模拟技术,以低分辨率结构为起点,为这个重要的转运蛋白创建了全原子模型。该全原子模型提供了对 N 端细胞外结构域、细胞内环和 C 端区域中特定残基在金属离子转运中的作用的新见解。特别是,该模型表明,孔的中心区域在跨膜区域包含四组蛋氨酸三联体。该结构证实了两个蛋氨酸三联体划定了转运蛋白的跨膜区域,并进一步确定了另外两个位于转运蛋白细胞外 N 端部分的蛋氨酸三联体。这四个三联体共同形成了一种结构,通过瞬态硫醚键促进金属离子逐步进入并穿过转运蛋白的跨膜通道。我们开发了一个用于预测金属结合位点的程序,鉴定了 hCTR1 三聚体中的假定铜结合位点。这些位点与已知的突变对蛋白质运输铜和顺铂的能力的影响非常吻合。