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首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Tryptophan phosphorescence and pressure effects on protein structure
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Tryptophan phosphorescence and pressure effects on protein structure

机译:色氨酸磷光和压力对蛋白质结构的影响

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摘要

After a brief introduction of the potentialities of Trp phosphorescence spectroscopy for probing the conformation and flexibility of protein structure, this presentation summarizes the effects of hydrostatic pressure (up to 3 k bar) on the native fold of monomeric and oligomeric proteins as inferred from the variation of the intrinsic phosphorescence lifetime and the oxygen and acrylamide bimolecular quenching rate constants of buried Trp residues. The pressure/temperature response of the globular fold and modulation of its dynamical structure is analyzed both in terms of a reduction of internal cavities and of hydration of the polypeptide. The implications of these findings for the thermodynamic stability of proteins and for the determination of subunit dissociation equilibria under high pressure conditions are also discussed.
机译:在简要介绍了Trp磷光光谱技术探测蛋白质结构的构象和灵活性的潜力后,本演讲总结了静水压力(最高达3 k bar)对单体和寡聚蛋白质天然折叠的影响,从变异中推断的磷光寿命和掩埋的Trp残基的氧和丙烯酰胺双分子猝灭速率常数的关系。从减少内腔和多肽的水合作用两方面分析了球状褶皱的压力/温度响应及其动态结构的调节。还讨论了这些发现对于蛋白质的热力学稳定性以及在高压条件下确定亚基解离平衡的意义。

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