首页> 外文期刊>Journal of the American Chemical Society >Design, Synthesis, And Evaluation Of A Lanthanide Chelatingrnprotein Probe: Clanp-5 Yields Predictable Paramagneticrneffects Independent Of Environment
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Design, Synthesis, And Evaluation Of A Lanthanide Chelatingrnprotein Probe: Clanp-5 Yields Predictable Paramagneticrneffects Independent Of Environment

机译:镧系元素螯合蛋白探针的设计,合成和评估:Clanp-5产生可预测的顺磁性效应,与环境无关

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Immobilized lanthanide ions offer the opportunity to refine structures of proteins and the complexes they form by using restraints obtained from paramagnetic NMR experiments. We report the design, synthesis, and spectroscopic evaluation of the lanthanide chelator, Caged Lanthanide NMR Probe 5 (CLaNP-5) readily attachable to a protein surface via two cysteine residues. The probe causes tunable pseudocontact shifts, alignment, paramagnetic relaxation enhancement, and luminescence, by chelating it to the appropriate lanthanide ion. The observation of single shifts and the finding that the magnetic susceptibility tensors obtained from shifts and alignment analyses are highly similar strongly indicate that the probe is rigid with respect to the protein backbone. By placing the probe at various positions on a model protein it is demonstrated that the size and orientation of the magnetic susceptibility tensor of the probe are independent of the local protein environment. Consequently, the effects of the probe are readily predictable using a protein structure only. These findings designate CLaNP-5 as a protein probe to deliver unambiguous high quality structural restraints in studies on protein-protein and protein-ligand interactions.
机译:固定化镧系离子提供了机会,可利用顺磁NMR实验获得的限制条件来精制蛋白质及其形成的复合物的结构。我们报告了镧系元素螯合剂,笼状镧系元素NMR探针5(CLaNP-5)的设计,合成和光谱评估,它们易于通过两个半胱氨酸残基附着于蛋白质表面。通过与适当的镧系元素离子螯合,探针可导致可调节的伪接触位移,对准,顺磁弛豫增强和发光。观察单个位移并发现从位移和比对分析获得的磁化率张量高度相似,这强烈表明该探针相对于蛋白质骨架是刚性的。通过将探针放置在模型蛋白质的各个位置,可以证明探针的磁化率张量的大小和方向与局部蛋白质环境无关。因此,仅使用蛋白质结构就可以容易地预测探针的作用。这些发现指定CLaNP-5作为蛋白质探针,可在蛋白质-蛋白质和蛋白质-配体相互作用的研究中提供明确的高质量结构限制。

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