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Ctr1介导的铜和顺铂转运的不同机制。

Distinct mechanisms for Ctr1-mediated copper and cisplatin transport.

作者信息

Sinani Devis, Adle David J, Kim Heejeong, Lee Jaekwon

机构信息

Redox Biology Center, Department of Biochemistry, University of Nebraska, Lincoln, Nebraska 68588-0664.

Redox Biology Center, Department of Biochemistry, University of Nebraska, Lincoln, Nebraska 68588-0664.

出版信息

J Biol Chem. 2007 Sep 14;282(37):26775-26785. doi: 10.1074/jbc.M703973200. Epub 2007 Jul 12.

Abstract

The Ctr1 family of integral membrane proteins is necessary for high affinity copper uptake in eukaryotes. Ctr1 is also involved in cellular accumulation of cisplatin, a platinum-based anticancer drug. Although the physiological role of Ctr1 has been revealed, the mechanism of action of Ctr1 remains to be elucidated. To gain a better understanding of Ctr1-mediated copper and cisplatin transport, we have monitored molecular dynamics and transport activities of yeast Saccharomyces cerevisiae Ctr1 and its mutant alleles. Co-expression of functional Ctr1 monomers fused with either cyan or yellow fluorescent protein resulted in fluorescence resonance energy transfer (FRET), which is consistent with multimer assembly of Ctr1. Copper near the K(m) value of Ctr1 enhanced FRET in a manner that correlated with cellular copper transport. In vitro cross-linking of Ctr1 confirmed that copper-induced FRET reflects conformational changes within pre-existing Ctr1 complexes. FRET assays in membrane-disrupted cells and protein extracts showed that intact cell structure is necessary for Ctr1 activity. Despite Ctr1-dependent cellular accumulation, cisplatin did not change Ctr1 FRET nor did it attenuate copper-induced FRET. A Ctr1 allele defective in copper transport enhanced cellular cisplatin accumulation. N-terminal methionine-rich motifs that are dispensable for copper transport play a critical role for cisplatin uptake. Taken together, our data reveal functional roles for structural remodeling of the Ctr1 multimeric complex in copper transport and suggest distinct mechanisms employed by Ctr1 for copper and cisplatin transport.

摘要

完整膜蛋白的Ctr1家族对于真核生物中高亲和力的铜摄取是必需的。Ctr1还参与顺铂(一种铂类抗癌药物)的细胞积累。尽管Ctr1的生理作用已被揭示,但其作用机制仍有待阐明。为了更好地理解Ctr1介导的铜和顺铂转运,我们监测了酿酒酵母Ctr1及其突变等位基因的分子动力学和转运活性。与青色或黄色荧光蛋白融合的功能性Ctr1单体的共表达导致荧光共振能量转移(FRET),这与Ctr1的多聚体组装一致。接近Ctr1的K(m)值的铜以与细胞铜转运相关的方式增强了FRET。Ctr1的体外交联证实铜诱导的FRET反映了预先存在的Ctr1复合物内的构象变化。在膜破坏的细胞和蛋白质提取物中的FRET分析表明完整的细胞结构对于Ctr1活性是必需的。尽管有Ctr1依赖性的细胞积累,但顺铂并未改变Ctr1的FRET,也没有减弱铜诱导的FRET。一个在铜转运方面有缺陷的Ctr1等位基因增强了细胞顺铂的积累。对于铜转运可有可无的富含N端甲硫氨酸的基序在顺铂摄取中起关键作用。综上所述,我们的数据揭示了Ctr1多聚体复合物结构重塑在铜转运中的功能作用,并表明Ctr1在铜和顺铂转运中采用了不同的机制。

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