Chattopadhyay Madhuri, Walter Eric D, Newell Dustin J, Jackson Pilgrim J, Aronoff-Spencer Eliah, Peisach Jack, Gerfen Gary J, Bennett Brian, Antholine William E, Millhauser Glenn L
Department of Chemistry & Biochemistry, University of California, Santa Cruz, California 95064, USA.
J Am Chem Soc. 2005 Sep 14;127(36):12647-56. doi: 10.1021/ja053254z.
The prion protein (PrP) binds Cu2+ in its N-terminal octarepeat domain. This unusual domain is comprised of four or more tandem repeats of the fundamental sequence PHGGGWGQ. Previous work from our laboratories demonstrates that at full copper occupancy, each HGGGW segment binds a single Cu2+. However, several recent studies suggest that low copper occupancy favors different coordination modes, possibly involving imidazoles from histidines in adjacent octapeptide segments. This is investigated here using a combination of X-band EPR, S-band EPR, and ESEEM, along with a library of modified peptides designed to favor different coordination interactions. At pH 7.4, three distinct coordination modes are identified. Each mode is fully characterized to reveal a series of copper-dependent octarepeat domain structures. Multiple His coordination is clearly identified at low copper stoichiometry. In addition, EPR detected copper-copper interactions at full occupancy suggest that the octarepeat domain partially collapses, perhaps stabilizing this specific binding mode and facilitating cooperative copper uptake. This work provides the first complete characterization of all dominant copper coordination modes at pH 7.4.
朊病毒蛋白(PrP)在其N端八肽重复结构域中结合Cu2+。这个不同寻常的结构域由基本序列PHGGGWGQ的四个或更多串联重复组成。我们实验室之前的研究表明,在铜完全占据时,每个HGGGW片段结合一个Cu2+。然而,最近的几项研究表明,低铜占据有利于不同的配位模式,可能涉及相邻八肽片段中组氨酸的咪唑。本文结合X波段电子顺磁共振(EPR)、S波段EPR和电子自旋回波包络调制(ESEEM),以及一系列旨在促进不同配位相互作用的修饰肽库对此进行了研究。在pH 7.4时,确定了三种不同的配位模式。对每种模式进行了全面表征,以揭示一系列依赖于铜的八肽重复结构域结构。在低铜化学计量比下清楚地鉴定出多个组氨酸配位。此外,EPR在完全占据时检测到铜-铜相互作用,这表明八肽重复结构域部分折叠,可能稳定了这种特定的结合模式并促进了协同铜摄取。这项工作首次全面表征了pH 7.4时所有主要的铜配位模式。