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通过两种不同技术鉴定出铜与全长朊病毒蛋白之间的高亲和力结合。

High affinity binding between copper and full-length prion protein identified by two different techniques.

作者信息

Thompsett Andrew R, Abdelraheim Salama R, Daniels Maki, Brown David R

机构信息

Department of Biology and Biochemistry, University of Bath, Bath BA2 7AY, United Kingdom.

出版信息

J Biol Chem. 2005 Dec 30;280(52):42750-8. doi: 10.1074/jbc.M506521200. Epub 2005 Oct 28.

Abstract

The cellular prion protein is known to be a copper-binding protein. Despite the wide range of studies on the copper binding of PrP, there have been no studies to determine the affinity of the protein on both full-length prion protein and under physiological conditions. We have used two techniques, isothermal titration calorimetry and competitive metal capture analysis, to determine the affinity of copper for wild type mouse PrP and a series of mutants. High affinity copper binding by wild type PrP has been confirmed by the independent techniques indicating the presence of specific tight copper binding sites up to femtomolar affinity. Altogether, four high affinity binding sites of between femto- and nanomolar affinities are located within the octameric repeat region of the protein at physiological pH. A fifth copper binding site of lower affinity than those of the octameric repeat region has been detected in full-length protein. Binding to this site is modulated by the histidine at residue 111. Removal of the octameric repeats leads to the enhancement of affinity of this fifth site and a second binding site outside of the repeat region undetected in the wild type protein. High affinity copper binding allows PrP to compete effectively for copper in the extracellular milieu. The copper binding affinities of PrP have been compared with those of proteins of known function and are of magnitudes compatible with an extracellular copper buffer or an enzymatic function such as superoxide dismutase like activity.

摘要

细胞朊蛋白已知是一种铜结合蛋白。尽管对朊蛋白的铜结合进行了广泛研究,但尚未有研究确定该蛋白在全长朊蛋白及生理条件下的亲和力。我们使用了等温滴定量热法和竞争性金属捕获分析这两种技术,来确定铜对野生型小鼠朊蛋白及一系列突变体的亲和力。野生型朊蛋白与铜的高亲和力结合已通过这两种独立技术得到证实,表明存在亲和力高达飞摩尔的特异性紧密铜结合位点。在生理pH值下,该蛋白的八聚体重复区域内总共存在四个亲和力介于飞摩尔和纳摩尔之间的高亲和力结合位点。在全长蛋白中检测到了一个亲和力低于八聚体重复区域结合位点的第五个铜结合位点。与该位点的结合受第111位残基处组氨酸的调节。去除八聚体重复序列会导致该第五个位点及野生型蛋白中未检测到的重复区域外的第二个结合位点的亲和力增强。高亲和力的铜结合使朊蛋白能够在细胞外环境中有效竞争铜。已将朊蛋白的铜结合亲和力与已知功能蛋白的亲和力进行了比较,其亲和力大小与细胞外铜缓冲液或超氧化物歧化酶样活性等酶功能相符。

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