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首页> 外文期刊>The FEBS journal >Forster resonance energy transfer studies of calmodulin produced by native protein ligation reveal inter-domain electrostatic repulsion
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Forster resonance energy transfer studies of calmodulin produced by native protein ligation reveal inter-domain electrostatic repulsion

机译:天然蛋白连接产生钙调蛋白的Forster共振能量转移研究显示域间静电排斥

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摘要

This study explores the influence of long-range intra-protein electrostatic interactions on the conformation of calmodulin in solution. Ensemble Forster resonance energy transfer (FRET) is measured for calmodulin with a fluorophore pair incorporated specifically with a donor at residue 17 and an acceptor at position 117. This construct was generated by a combination of solid phase peptide synthesis, cloning, expression and native chemical ligation. This labelling method has not previously been used with calmodulin and represents a convenient method for ensuring the explicit positioning of the fluorophores. The ensemble FRET experiments reveal significant electrostatic repulsion between the globular domains in the calcium-free protein. At low salt, calmodulin has a relatively extended conformation and the distance between the domains is further increased by denaturation, by heat or by non-ionic denaturants. The repulsion between domains is screened by salt and is also diminished by calcium binding,which changes the protein net charge from —23 to —15. Compared with the calcium-free form at low salt, the FRET efficiency for the calcium-bound form has, on average, increased 10-fold. The conformation of the calcium form is insensitive to salt screening. These results imply that when the two globular domains of calmodulin interact with target, there is no significant free energy penalty due to electrostatic interactions.
机译:这项研究探讨了远程蛋白内静电相互作用对溶液中钙调蛋白构象的影响。用钙荧光蛋白对测量整合的Forster共振能量转移(FRET),其中的荧光团与在第17位残基的供体和在第117位的受体特别掺入。该构建体是通过固相肽合成,克隆,表达和天然化学的组合而生成的结扎。该标记方法以前未与钙调蛋白一起使用,并且代表一种确保荧光团明确定位的简便方法。整体FRET实验揭示了无钙蛋白质中球状结构域之间的显着静电排斥。在低盐下,钙调蛋白具有相对扩展的构象,并且通过变性,通过加热或通过非离子变性剂,结构域之间的距离进一步增加。域之间的排斥被盐筛选,并且也被钙结合所减弱,钙结合将蛋白质的净电荷从-23变为-15。与低盐下的无钙形式相比,钙结合形式的FRET效率平均提高了10倍。钙形式的构象对盐筛选不敏感。这些结果暗示,当钙调蛋白的两个球状结构域与靶相互作用时,由于静电相互作用而没有明显的自由能损失。

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