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压力对单体蛋白质柔韧性的影响

Pressure effects on protein flexibility monomeric proteins.

作者信息

Cioni P, Strambini G B

机构信息

C.N.R.--Istituto di Biofisica, Pisa, Italy.

出版信息

J Mol Biol. 1994 Sep 23;242(3):291-301. doi: 10.1006/jmbi.1994.1579.

DOI:10.1006/jmbi.1994.1579
PMID:8089848
Abstract

Alterations in flexibility of monomeric proteins induced by hydrostatic pressure in the predenaturational range (< or = 3 kbar) were probed through the decay kinetics of tryptophan phosphorescence. With apoazurin, ribonuclease T1, wild-type and V67G mutant and phosphoglycerate kinase, pressure effects on the triplet lifetime (tau) and the amplitudes of multicomponent decays emphasize that subtle changes in conformation are ubiquitous. With apoazurin the increase in tau attests to a tightening of the protein core that is enhanced at high temperature. On the contrary, tau decreases with ribonuclease T1, wild-type and mutant, and with phosphoglycerate kinase, indicating that pressure induces a greater flexibility to protein regions in proximity to the surface of the macromolecule. For phosphoglycerate kinase the decrease in tau and the parallel increase in fluorescence intensity and red-shift of the fluorescence spectrum unveil an "unfolding" like transition with midpoint pressures of 1.1 kbar at 5 degrees C and 1.6 kbar at 25 degrees C. Evidence that unfolding of the C-domain of this protein is, however, less than complete is provided by a delta G zero that is about half of that obtained by denaturation in guanidine hydrochloride and also by the ability of this structure to undergo conformational drift. In 70% glycerol, pressure effects on tau of apoazurin are attenuated while for ribonuclease T1 there is a reversal of the tendency with a pronounced increase in tau. With phosphoglycerate kinase glycerol abolishes entirely the "unfolding" transition and all hysteresis effects. A consistent picture of these findings is provided in terms of the location of the probe and of the opposing effects that pressure exerts on protein flexibility by reducing internal cavities and increasing the hydration of the polypeptide.

摘要

通过色氨酸磷光的衰减动力学,研究了静水压力(<或 = 3千巴)在变性前范围内对单体蛋白柔韧性的影响。对于脱辅基铜蓝蛋白、核糖核酸酶T1、野生型和V67G突变体以及磷酸甘油酸激酶,压力对三重态寿命(tau)和多组分衰减幅度的影响强调了构象的细微变化无处不在。对于脱辅基铜蓝蛋白,tau的增加证明了蛋白质核心的收紧,这种收紧在高温下会增强。相反,对于核糖核酸酶T1、野生型和突变体以及磷酸甘油酸激酶,tau会降低,这表明压力使大分子表面附近的蛋白质区域具有更大的柔韧性。对于磷酸甘油酸激酶,tau的降低以及荧光强度的平行增加和荧光光谱的红移揭示了一种“展开”样转变,在5℃时中点压力为1.1千巴,在25℃时为1.6千巴。然而,该蛋白C结构域的展开不完全的证据是由一个约为盐酸胍变性所得ΔG零的一半的ΔG零以及该结构经历构象漂移的能力提供的。在70%甘油中,压力对脱辅基铜蓝蛋白tau的影响减弱,而对于核糖核酸酶T1,趋势发生逆转,tau显著增加。对于磷酸甘油酸激酶,甘油完全消除了“展开”转变和所有滞后效应。根据探针的位置以及压力通过减少内部空腔和增加多肽水合作用对蛋白质柔韧性产生的相反影响,对这些发现提供了一个一致的描述。

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