首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Soft metal ions Cd(II) and Hg(II) induce triple-stranded alpha-helical assembly and folding of a de novo designed peptide in their trigonal geometries.
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Soft metal ions Cd(II) and Hg(II) induce triple-stranded alpha-helical assembly and folding of a de novo designed peptide in their trigonal geometries.

机译:软金属离子Cd(II)和Hg(II)会在其三角几何形状中诱导三链α-螺旋组装和从头设计的肽折叠。

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摘要

We previously reported the de novo design of an amphiphilic peptide [YGG(IEKKIEA)4] that forms a native-like, parallel triple-stranded coiled coil. Starting from this peptide, we sought to regulate the assembly of the peptide by a metal ion. The replacement of the Ile18 and Ile22 residues with Ala and Cys residues, respectively, in the hydrophobic positions disrupted of the triple-stranded alpha-helix structure. The addition of Cd(II), however, resulted in the reconstitution of the triple-stranded alpha-helix bundle, as revealed by circular dichroism (CD) spectroscopy and sedimentation equilibrium analysis. By titration with metal ions and monitoring the change in the intensity of the CD spectra at 222 nm, the dissociation constant Kd was determined to be 1.5 +/- 0.8 microM for Cd(II). The triple-stranded complex formed by the 113Cd(II) ion showed a single 113Cd NMR resonance at 572 ppm whose chemical shift was not affected by the presence of Cl- ions. The 113Cd NMR resonance was connected with the betaH protons of the cysteine residue by 1H-113Cd heteronuclear multiple quantum correlation spectroscopy. These NMR results indicate that the three cysteine residues are coordinated to the cadmium ion in a trigonal-planar complex. Hg(II) also induced the assembly of the peptide into a triple-stranded alpha-helical bundle below the Hg(II)/peptide ratio of 1/3. With excess Hg(II), however, the alpha-helicity of the peptide was decreased, with the change of the Hg(II) coordination state from three to two. Combining this construct with other functional domains should facilitate the production of artificial proteins with functions controlled by metal ions.
机译:我们先前报道了两亲性肽[YGG(IEKKIEA)4]的从头设计,该两亲性肽形成了天然的,平行的三链卷曲螺旋。从这种肽开始,我们试图通过金属离子调节肽的装配。在疏水位置分别用Ala和Cys残基取代Ile18和Ile22残基,破坏了三链α-螺旋结构。然而,Cd(II)的添加导致了三链α-螺旋束的重建,如圆二色性(CD)光谱和沉降平衡分析所揭示的。通过用金属离子滴定并监测222 nm处CD光谱强度的变化,确定Cd(II)的解离常数Kd为1.5 +/- 0.8 microM。由113Cd(II)离子形成的三链络合物在572 ppm处显示单个113Cd NMR共振,其化学位移不受Cl-离子的存在影响。通过1H-113Cd异核多量子相关光谱法将113Cd NMR共振与半胱氨酸残基的βH质子相连。这些NMR结果表明,在三角形-平面复合物中,三个半胱氨酸残基与镉离子配位。 Hg(II)还诱导将肽组装成低于Hg(II)/肽比率1/3的三链α-螺旋束。然而,随着过量的Hg(II),肽的α-螺旋度降低,Hg(II)的配位状态从3变为2。将此构建体与其他功能域结合在一起,应有助于生产具有金属离子控制功能的人工蛋白质。

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