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首页> 外文期刊>Biochemical and Biophysical Research Communications >Continuous wave W- and D-Band EPR spectroscopy offer 'sweet- spots' for characterizing conformational changes and dynamics in intrinsically disordered proteins
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Continuous wave W- and D-Band EPR spectroscopy offer 'sweet- spots' for characterizing conformational changes and dynamics in intrinsically disordered proteins

机译:连续波W-和D波段EPR光谱提供“甜点”,用于在本质上无序蛋白质中表征构象变化和动态

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Site-directed spin labeling (SDSL) electron paramagnetic resonance (EPR) spectroscopy is a powerful tool for characterizing conformational sampling and dynamics in biological macromolecules. Here we demonstrate that nitroxide spectra collected at frequencies higher than X-band (~9.5 GHz) have sensitivity to the timescale of motion sampled by highly dynamic intrinsically disordered proteins (IDPs). The 68 amino acid protein IA3, was spin-labeled at two distinct sites and a comparison of X-band, Q-band (35 GHz) and W-band (95 GHz) spectra are shown for this protein as it undergoes the helical transition chemically induced by tri-fluoroethanol. Experimental spectra at W-band showed pronounced line shape dispersion corresponding to a change in correlation time from ~0.3 ns (unstructured) to ~0.6 ns (α-helical) as indicated by comparison with simulations. Experimental and simulated spectra at X- and Q-bands showed minimal dispersion over this range, illustrating the utility of SDSL EPR at higher frequencies for characterizing structural transitions and dynamics in IDPs.
机译:站点定向的旋转标记(SDSL)电子顺磁共振(EPR)光谱是一种强大的工具,用于在生物大分子中表征构象采样和动态。在这里,我们证明在高于X波段(〜9.5GHz)的频率下收集的硝基氧化物光谱对由高度动态的本质无序蛋白质(IDPS)采样的运动时间内的敏感性。 68个氨基酸蛋白IA3在两个不同的位点旋旋标记,并且X场,Q频带(35GHz)和W波段(95GHz)光谱显示为该蛋白质,因为它经历了螺旋过渡由三氟乙醇化学诱导。 W波段的实验光谱显示了与与模拟相比的比较指示的约0.3ns(非结构化)到〜0.6ns(α-螺旋)相对应的明显线形状分散。 X-和Q频带的实验和模拟光谱在该范围内显示出最小的色散,说明SDSL EPR处于较高频率的实用性,用于表征IDP中的结构转变和动力学。

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