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Apoprotein Structure and Metal Binding Characterization of a de Novo Designed Peptide α3DIV that Sequesters Toxic Heavy Metals

机译:螯合有毒重金属的从头设计的肽α3DIV的载脂蛋白结构和金属结合特性

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摘要

De novo protein design is a biologically relevant approach that provides a novel process in elucidating protein folding and modeling the metal centers of metalloproteins in a completely unrelated or simplified fold. An integral step in de novo protein design is the establishment of a well-folded scaffold with one conformation, which is a fundamental characteristic of many native proteins. Here, we report the NMR solution structure of apo α3DIV at pH 7.0, a de novo designed three-helix bundle peptide containing a triscysteine motif (Cys18, Cys28, and Cys67) that binds toxic heavy metals. The structure comprises 1067 NOE restraints derived from multinuclear multidimensional NOESY, as well as 138 dihedral angles (ψ, φ, and χ1). The backbone and heavy atoms of the 20 lowest energy structures have a root mean square deviation from the mean structure of 0.79 (0.16) Å and 1.31 (0.15) Å, respectively. When compared to the parent structure α3D, the substitution of Leu residues to Cys enhanced the α-helical content of α3DIV while maintaining the same overall topology and fold. In addition, solution studies on the metalated species illustrated metal-induced stability. An increase in the melting temperatures was observed for Hg(II), Pb(II), or Cd(II) bound α3DIV by 18–24 °C compared to its apo counterpart. Further, the extended X-ray absorption fine structure analysis on Hg(II)-α3DIV produced an average Hg(II)–S bond length at 2.36 Å, indicating a trigonal T-shaped coordination environment. Overall, the structure of apo α3DIV reveals an asymmetric distorted triscysteine metal binding site, which offers a model for native metalloregulatory proteins with thiol-rich ligands that function in regulating toxic heavy metals, such as ArsR, CadC, MerR, and PbrR
机译:从头进行蛋白质设计是生物学上相关的方法,它为阐明蛋白质折叠和以完全不相关或简化的折叠形式模拟金属蛋白的金属中心提供了新的过程。从头进行蛋白质设计的必不可少的步骤是建立具有一种构象的折叠良好的支架,这是许多天然蛋白质的基本特征。在这里,我们报告了apoα3DIV在pH 7.0时的NMR溶液结构,这是从头设计的三螺旋束肽,其中含有结合有毒重金属的三半胱氨酸基序(Cys18,Cys28和Cys67)。该结构包含从多核多维NOESY派生的1067个NOE约束以及138个二面角(ψ,φ和χ1)。 20个最低能级结构的主链和重原子的均方根偏差分别为0.79(0.16)Å和1.31(0.15)Å。当与母体结构α3D比较时,Leu残基取代为Cys增强了α3DIV的α-螺旋含量,同时保持了相同的整体拓扑和折叠。另外,对金属化物质的溶液研究表明了金属诱导的稳定性。与apo对应物相比,Hg(II),Pb(II)或Cd(II)结合的α3DIV的熔化温度升高了18-24°C。此外,对Hg(II)-α3DIV的扩展X射线吸收精细结构分析得出Hg(II)-S键的平均键长为2.36Å,表明为三角形T形配位环境。总体而言,载脂蛋白α3DIV的结构揭示了不对称的扭曲的三半胱氨酸金属结合位点,这为具有富硫醇配体的天然金属调节蛋白提供了模型,该蛋白可调节有毒重金属,如ArsR,CadC,MerR和PbrR

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