Meersman Filip, Dobson Christopher M, Heremans Karel
Department of Chemistry, Katholieke Universiteit Leuven, Celestijnenlaan 200F, B-3001 Leuven, Belgium.
Chem Soc Rev. 2006 Oct;35(10):908-17. doi: 10.1039/b517761h. Epub 2006 Jul 21.
High hydrostatic pressure induces conformational changes in proteins ranging from compression of the molecules to loss of native structure. In this tutorial review we describe how the interplay between the volume change and the compressibility leads to pressure-induced unfolding of proteins and dissociation of amyloid fibrils. We also discuss the effect of pressure on protein folding and free energy landscapes. From a molecular viewpoint, pressure effects can be rationalised in terms of packing and hydration of proteins.
高静水压力会引起蛋白质的构象变化,范围从分子的压缩到天然结构的丧失。在本教程综述中,我们描述了体积变化与可压缩性之间的相互作用如何导致压力诱导的蛋白质解折叠和淀粉样纤维的解离。我们还讨论了压力对蛋白质折叠和自由能景观的影响。从分子角度来看,压力效应可以根据蛋白质的堆积和水合作用来合理化。