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Structural determinants of nitroxide motion in spin-labeled proteins: Solvent-exposed sites in helix B of T4 lysozyme

机译:自旋标记蛋白中氮氧化物运动的结构决定因素:T4溶菌酶螺旋B中的溶剂暴露位点

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摘要

Site-directed spin labeling provides a means for exploring structure and dynamics in proteins. To interpret the complex EPR spectra that often arise, it is necessary to characterize the rotamers of the spin-labeled side chain and the interactions they make with the local environment in proteins of known structure. For this purpose, crystal structures have been determined for T4 lysozyme bearing a nitroxide side chain (R1) at the solvent-exposed helical sites 41 and 44 in the B helix. These sites are of particular interest in that the corresponding EPR spectra reveal two dynamic states of R1, one of which is relatively immobilized suggesting interactions of the nitroxide with the environment. The crystal structures together with the effect of mutagenesis of nearest neighbors on the motion of R1 suggest intrahelical interactions of 41R1 with the i + 4 residue and of 44R1 with the i + 1 residue. Such interactions appear to be specific to particular rotamers of the R1 side chain.
机译:定点旋转标记提供了一种探索蛋白质结构和动力学的方法。为了解释经常出现的复杂EPR光谱,必须表征自旋标记侧链的旋转异构体及其与已知结构蛋白质中局部环境的相互作用。为此,已经确定了在B螺旋中暴露于溶剂的螺旋位点41和44处带有氮氧化物侧链(R1)的T4溶菌酶的晶体结构。这些位置特别受关注,因为相应的EPR光谱揭示了R1的两个动态状态,其中一个相对固定,这表明一氧化氮与环境的相互作用。晶体结构以及最近邻居的诱变对R1运动的影响表明41R1与i + 4残基和44R1与i + 1残基的螺旋内相互作用。此类相互作用似乎是特定于R1侧链的特定旋转异构体的。

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