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锌结合对内在无序蛋白原胸腺素α的结构和动力学的影响:金属化作为熵开关的证据。

Effects of zinc binding on the structure and dynamics of the intrinsically disordered protein prothymosin alpha: evidence for metalation as an entropic switch.

作者信息

Yi Shiluan, Boys Brian L, Brickenden Anne, Konermann Lars, Choy Wing-Yiu

机构信息

Department of Biochemistry, The University of Western Ontario, London, Ontario, Canada N6A 5C1.

出版信息

Biochemistry. 2007 Nov 13;46(45):13120-30. doi: 10.1021/bi7014822. Epub 2007 Oct 11.

Abstract

Prothymosin alpha (ProTalpha) is a small acidic protein that is highly conserved among mammals. The human form has 110 amino acid residues (M.W. 12.1 kDa; pI approximately 3.5) and is found to be expressed in a wide variety of tissues. ProTalpha plays an essential role in cell proliferation and apoptosis, and it is involved in transcriptional regulation of oxidative stress-protecting genes. Despite the multiple biological functions ProTalpha has, the protein does not adopt a well-defined three-dimensional structure under physiological conditions. Previous studies have shown that the interaction between ProTalpha and some of its protein targets is significantly enhanced in the presence of zinc ions, suggesting that zinc binding plays a crucial role in the protein's function. In this work, we use nuclear magnetic resonance spectroscopy and electrospray ionization mass spectrometry to characterize the structure and dynamics of ProTalpha and its complexation with Zn2+. We found that zinc binding causes partial folding of the C-terminal half of ProTalpha, especially the Glu-rich region, while the N-terminal portion of the protein remains largely unstructured. The metalated protein also exhibits a significantly reduced flexibility. ProTalpha shows a high specificity for Zn2+, and the interactions with other divalent cations (Ca2+, Mg2+) are much weaker. On the basis of the site-specific information obtained here, as well as the results from previous studies, we propose that the conformational and dynamic changes upon zinc binding may act as an entropic switch that greatly facilitates the binding to other proteins.

摘要

前胸腺素α(ProTα)是一种在哺乳动物中高度保守的小酸性蛋白。人源形式含有110个氨基酸残基(分子量12.1 kDa;pI约为3.5),在多种组织中均有表达。ProTα在细胞增殖和凋亡中起重要作用,并且参与氧化应激保护基因的转录调控。尽管ProTα具有多种生物学功能,但该蛋白在生理条件下并不具有明确的三维结构。先前的研究表明,在锌离子存在的情况下,ProTα与其一些蛋白质靶点之间的相互作用会显著增强,这表明锌结合在该蛋白的功能中起着关键作用。在这项工作中,我们使用核磁共振光谱和电喷雾电离质谱来表征ProTα的结构和动力学及其与Zn²⁺的络合情况。我们发现锌结合导致ProTα C端一半部分折叠,尤其是富含Glu的区域,而该蛋白的N端部分在很大程度上仍未结构化。金属化的蛋白还表现出显著降低的灵活性。ProTα对Zn²⁺具有高度特异性,与其他二价阳离子(Ca²⁺、Mg²⁺)的相互作用则弱得多。基于此处获得的位点特异性信息以及先前研究的结果,我们提出锌结合后的构象和动力学变化可能作为一种熵开关,极大地促进了与其他蛋白质的结合。

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