Horng Yih-Chern, Cobine Paul A, Maxfield Andrew B, Carr Heather S, Winge Dennis R
University of Utah Health Sciences Center, Salt Lake City, Utah 84132, USA.
J Biol Chem. 2004 Aug 20;279(34):35334-40. doi: 10.1074/jbc.M404747200. Epub 2004 Jun 15.
The assembly of the copper sites in cytochrome c oxidase involves a series of accessory proteins, including Cox11, Cox17, and Sco1. The two mitochondrial inner membrane proteins Cox11 and Sco1 are thought to be copper donors to the Cu(B) and Cu(A) sites of cytochrome oxidase, respectively, whereas Cox17 is believed to be the copper donor to Sco1 within the intermembrane space. In this report we show Cox17 is a specific copper donor to both Sco1 and Cox11. Using in vitro studies with purified proteins, we demonstrate direct copper transfer from CuCox17 to Sco1 or Cox11. The transfer is specific because no transfer occurs to heterologous proteins, including bovine serum albumin and carbonic anhydrase. In addition, a C57Y mutant of Cox17 fails to transfer copper to Sco1 but is competent for copper transfer to Cox11. The in vitro transfer studies were corroborated by a yeast cytoplasm expression system. Soluble domains of Sco1 and Cox11, lacking the mitochondrial targeting sequence and transmembrane domains, were expressed in the yeast cytoplasm. Metallation of these domains was strictly dependent on the co-expression of Cox17. Thus, Cox17 represents a novel copper chaperone that delivers copper to two proteins.
细胞色素c氧化酶中铜位点的组装涉及一系列辅助蛋白,包括Cox11、Cox17和Sco1。两种线粒体内膜蛋白Cox11和Sco1被认为分别是细胞色素氧化酶Cu(B)和Cu(A)位点的铜供体,而Cox17被认为是膜间隙中Sco1的铜供体。在本报告中,我们表明Cox17是Sco1和Cox11两者的特异性铜供体。通过使用纯化蛋白进行体外研究,我们证明了铜从CuCox17直接转移到Sco1或Cox11。这种转移具有特异性,因为不会转移到包括牛血清白蛋白和碳酸酐酶在内的异源蛋白上。此外,Cox17的C57Y突变体无法将铜转移到Sco1,但能够将铜转移到Cox11。体外转移研究得到了酵母细胞质表达系统的证实。缺乏线粒体靶向序列和跨膜结构域的Sco1和Cox11的可溶性结构域在酵母细胞质中表达。这些结构域的金属化严格依赖于Cox17的共表达。因此,Cox17代表一种新型的铜伴侣蛋白,它将铜传递给两种蛋白质。