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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Spectroscopic and metal-binding properties of DF3: An artificial protein able to accommodate different metal ions
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Spectroscopic and metal-binding properties of DF3: An artificial protein able to accommodate different metal ions

机译:DF3的光谱和金属结合特性:能够容纳不同金属离子的人工蛋白质

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The design, synthesis, and metal-binding properties of DF3, a new de novo designed di-iron protein model are described ("DF" represents due ferri, Italian for "two iron," "di-iron"). DF3 is the latest member of the DF family of synthetic proteins. They consist of helix-loop-helix hairpins, designed to dimerize and form an antiparallel four-helix bundle that encompasses a metal-binding site similar to those of non-heme carboxylate-bridged di-iron proteins. Unlike previous DF proteins, DF3 is highly soluble in water (up to 3 mM) and forms stable complexes with several metal ions (Zn, Co, and Mn), with the desired secondary structure and the expected stoichiometry of two ions per protein. UV-vis studies of Co(II) and Fe(III) complexes confirm a metal-binding environment similar to previous di-Co(II)- and di-Fe(III)-DF proteins, including the presence of a μ-oxo-di-Fe(III) unit. Interestingly, UV-vis, EPR, and resonance Raman studies suggest the interaction of a tyrosine adjacent to the di-Fe(III) center. The design of DF3 was aimed at increasing the accessibility of small molecules to the active site of the four-helix bundle. Indeed, binding of azide to the di-Fe(III) site demonstrates a more accessible metal site compared with previous DFs. In fact, fitting of the binding curve to the Hill equation allows us to quantify a 150% accessibility enhancement, with respect to DF2. All these results represent a significant step towards the development of a functional synthetic DF metalloprotein.
机译:DF3的设计,合成和金属结合特性,从头开始设计的一种新的二铁蛋白质模型已得到描述(“ DF”代表Due Ferri,意大利语中表示“两铁”,“二铁”)。 DF3是DF合成蛋白家族的最新成员。它们由螺旋-环-螺旋发夹组成,设计用于二聚化并形成反平行的四螺旋束,该束包含与非血红素羧酸盐桥接的二铁蛋白相似的金属结合位点。与以前的DF蛋白不同,DF3在水中的溶解度最高(高达3 mM),并与几种金属离子(Zn,Co和Mn)形成稳定的络合物,具有所需的二级结构和每个蛋白质两个离子的理想化学计量。 Co(II)和Fe(III)配合物的紫外可见光研究证实了与以前的di-Co(II)-和di-Fe(III)-DF蛋白相似的金属结合环境,包括存在μ-氧代-二铁(III)单元。有趣的是,UV-vis,EPR和共振拉曼研究表明与di-Fe(III)中心相邻的酪氨酸的相互作用。 DF3的设计旨在增加小分子对四螺旋束活性位点的可及性。实际上,叠氮化物与二Fe(III)位点的结合表明与以前的DFs相比,金属位点更易接近。实际上,将绑定曲线拟合到Hill方程使我们能够相对于DF2量化150%的可访问性增强。所有这些结果代表了开发功能性合成DF金属蛋白的重要一步。

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