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Cavities and packing defects in the structural dynamics of myoglobin

机译:肌红蛋白结构动力学中的空洞和堆积缺陷

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摘要

Small globular proteins contain internal cavities and packing defects that reduce thermodynamic stability but seem to play a role in controlling function by defining pathways for the diffusion of the ligand/substrate to the active site. In the case of myoglobin (Mb), a prototype for structure–function relationship studies, the photosensitivity of the adduct of the reduced protein with CO, O2 and NO allows events related to the migration of the ligand through the matrix to be followed. The crystal structures of intermediate states of wild-type (wt) and mutant Mbs show the photolysed CO to be located either in the distal heme pocket (primary docking site) or in one of two alternative cavities (secondary docking sites) corresponding to packing defects accessible to an atom of xenon. These results convey the general picture that pre-existing internal cavities are involved in controlling the dynamics and reactivity of the reactions of Mb with O2 and other ligands, including NO.
机译:小球状蛋白含有降低热力学稳定性的内腔和堆积缺陷,但似乎通过定义配体/底物扩散到活性位点的途径在控制功能中起作用。以肌红蛋白(Mb)为结构-功能关系研究的原型,还原蛋白与CO,O2和NO的加合物的光敏性可追踪与配体通过基质迁移有关的事件。野生型(wt)和突变型Mbs的中间状态的晶体结构表明,光解的CO位于血红素远端囊袋(主要的对接位点)中,或者位于与填充缺陷相对应的两个其他空腔之一(次要的对接位点)中氙原子可接近的原子这些结果传达了一般的印象,即预先存在的内腔参与控制Mb与O2和其他配体(包括NO)的反应的动力学和反应性。

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