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铜在类铜蓝蛋白铜载体蛋白CopC折叠和稳定性中的作用。

Role of copper in folding and stability of cupredoxin-like copper-carrier protein CopC.

作者信息

Hussain Faiza, Sedlak Erik, Wittung-Stafshede Pernilla

机构信息

Department of Biochemistry and Cell Biology, Rice University, 6100 Main Street, Houston, TX 77251, USA.

出版信息

Arch Biochem Biophys. 2007 Nov 1;467(1):58-66. doi: 10.1016/j.abb.2007.08.014. Epub 2007 Aug 29.

Abstract

CopC is a periplasmic copper carrier that, in contrast to cytoplasmic copper chaperones, has a beta-barrel fold and two metal-binding sites distinct for Cu(II) and Cu(I). The copper sites are located in each end of the molecule: the Cu(I) site involves His and Met coordination whereas the Cu(II) site consists of charged residues. To reveal biophysical properties of this protein, we have explored the effects of the cofactors on CopC unfolding in vitro. We demonstrate that Cu(II) coordination affects both protein stability and unfolding pathway, whereas Cu(I) has only a small effect on stability. Apo-CopC unfolds in a two-state reaction between pH 4 and 7.5 with maximal stability at pH 6. In contrast, Cu(II)-CopC unfolds in a three-state reaction at pH6 that involves a partly folded intermediate that retains Cu(II). This intermediate exhibits high thermal and chemical stability. Unique energetic and structural properties of different metalated CopC forms may help facilitate metal transport to many partners in vivo.

摘要

CopC是一种周质铜载体,与细胞质铜伴侣不同,它具有β-桶状折叠结构,并且有两个分别用于结合Cu(II)和Cu(I)的金属结合位点。铜位点位于分子的两端:Cu(I)位点涉及组氨酸和甲硫氨酸的配位,而Cu(II)位点由带电荷的残基组成。为了揭示该蛋白质的生物物理特性,我们在体外研究了辅因子对CopC去折叠的影响。我们证明,Cu(II)配位既影响蛋白质稳定性又影响去折叠途径,而Cu(I)对稳定性只有很小的影响。脱辅基CopC在pH 4至7.5之间以两态反应去折叠,在pH 6时具有最大稳定性。相比之下,Cu(II)-CopC在pH 6时以三态反应去折叠,该反应涉及一个保留Cu(II)的部分折叠中间体。这个中间体表现出高热稳定性和化学稳定性。不同金属化形式的CopC独特的能量和结构特性可能有助于促进体内金属向许多伴侣的转运。

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