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Bioinorganic Chemistry Special Feature: Lanthanide-binding helix-turn-helix peptides: Solution structure of a designed metallonuclease

机译:生物无机化学特征:镧系元素结合的螺旋-转-螺旋肽:设计的金属核酸酶的溶液结构

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摘要

A designed lanthanide-binding chimeric peptide based on the strikingly similar geometries of the EF-hand and helix-turn-helix (HTH) motifs was investigated by NMR and CD spectroscopy and found to retain the same overall solution structure of the parental motifs. CD spectroscopy showed that the 33-mer peptide P3W folds on binding lanthanides, with an increase in α-helicity from 20% in the absence of metal to 38% and 35% in the presence of excess Eu(III) and La(III) ions, respectively. The conditional binding affinities of P3W for La(III) (5.9 ± 0.3 μM) and for Eu(III) (6.2 ± 0.3 μM) (pH 7.8, 5 mM Tris) were determined by tryptophan fluorescence titration. The La(III) complex of peptide P3, which differs from P3W by only one Trp-to-His substitution, has much less signal dispersion in the proton NMR spectra than LaP3W, indicating that the Trp residue is a critical hydrophobic anchor for maintaining a well-folded helix-turn-helix structure. A chemical-shift index analysis indicates the metallopeptide has a helix-loop-helix secondary structure. A structure calculated by using nuclear Overhauser effect and other NMR constraints reveals that P3W not only has a tightly folded metal-binding loop but also retains the α−α corner supersecondary structure of the parental motifs. Although the solution structure is undefined at both the N and C termini, the NMR structure confirms the successful incorporation of a metal-binding loop into a HTH sequence.
机译:通过NMR和CD光谱研究了基于EF-手和螺旋-转-螺旋(HTH)基序的惊人相似几何形状的设计的结合镧系元素的嵌合肽,发现它们保留了亲本基序相同的整体溶液结构。 CD光谱表明,33-mer肽P3W在结合的镧系元素上折叠,α-螺旋度从无金属时的20%增加到过量Eu(III)和La(III)存在时的38%和35%离子。通过色氨酸荧光滴定确定P3W对La(III)(5.9±0.3μM)和Eu(III)(6.2±0.3μM)(pH 7.8,5 mM Tris)的条件结合亲和力。肽P3的La(III)络合物与P3W的区别仅在于一个Trp-His取代,在质子NMR光谱中的信号分散度比LaP3W小得多,这表明Trp残基是维持A3的关键疏水锚。折叠良好的螺旋-转-螺旋结构。化学位移指数分析表明金属肽具有螺旋-环-螺旋二级结构。通过使用核Overhauser效应和其他NMR约束计算得出的结构表明,P3W不仅具有紧密折叠的金属结合环,而且还保留了亲本基序的α-α角超二级结构。尽管溶液结构在N和C末端均不确定,但NMR结构证实了金属结合环成功地结合到HTH序列中。

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