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在低pH值下ACBP明显的两态折叠平衡中具有高折叠概率和低折叠概率的瞬态中间状态。

Transient intermediary states with high and low folding probabilities in the apparent two-state folding equilibrium of ACBP at low pH.

作者信息

Thomsen Jens K, Kragelund Birthe B, Teilum Kaare, Knudsen Jens, Poulsen Flemming M

机构信息

Department of Protein Chemistry, Institute of Molecular Biology, University of Copenhagen, Øster Farimagsgade 2A, 1353 Copenhagen K, Denmark.

出版信息

J Mol Biol. 2002 May 3;318(3):805-14. doi: 10.1016/S0022-2836(02)00159-6.

Abstract

Measurements of the stability as a function of pH for the acyl-coenzyme A binding protein (ACBP) has shown a significant difference in the pH transition midpoint measured by NMR spectroscopy at pH 3.12 and the transition midpoint measured at pH 2.92 and 2.97 by circular dichroism and by fluorescence spectroscopy, respectively. A similar behavior has not been observed in other proteins. It is suggested that these differences arise because the population of the unfolded molecules still contains significant amounts of native like secondary and tertiary structure. NMR spectroscopy measures the concentration of the two components of the folding unfolding equilibrium individually, whereas circular dichroism and fluorescence measure the concentration of the conformations of the light-absorbing chromophores present in both the folded and the unfolded molecules. In the narrow pH range, nascent structure can be detected as the average amount of secondary structure per unfolded molecule and hydrophobic interactions in the population of unfolded molecules. These structures are not observable immediately by NMR spectroscopy; however, a chemical shift analysis of the peptide backbone (13)C chemical shift indicates strongly the existence of short-lived and transient helical structures at pH 2.3. Magnetization transfer studies have been applied to study the equilibrium between folded and unfolded ACBP near the pH transition point measured by NMR. This study has shown that there are two categories of subpopulations in the population of unfolded ACBP. One for which magnetization can be transferred to the folded form during the folding process, and one for which transfer is not observed. The molecules of the latter population of unfolded protein apparently, do not fold within the time-frame of the magnetization transfer experiment. This result suggests the existence of a subpopulation of the acid-unfolded protein molecules with a high propensity for folding. It is suggested that in this subpopulation, a particular set of native like interactions in the peptide backbone and between side-chains in the peptide chain have to be formed.

摘要

对酰基辅酶A结合蛋白(ACBP)稳定性随pH值变化的测量表明,通过核磁共振光谱法在pH 3.12处测得的pH转变中点与分别通过圆二色性和荧光光谱法在pH 2.92和2.97处测得的转变中点存在显著差异。在其他蛋白质中未观察到类似行为。有人认为,这些差异的出现是因为未折叠分子群体中仍含有大量类似天然的二级和三级结构。核磁共振光谱法分别测量折叠-展开平衡的两个组分的浓度,而圆二色性和荧光测量折叠和未折叠分子中存在的吸光发色团构象的浓度。在狭窄的pH范围内,新生结构可作为每个未折叠分子的二级结构平均量和未折叠分子群体中的疏水相互作用来检测。这些结构不能立即通过核磁共振光谱法观察到;然而,肽主链的化学位移分析(13C化学位移)强烈表明在pH 2.3时存在短寿命和瞬态螺旋结构。磁化转移研究已应用于研究通过核磁共振测量的pH转变点附近折叠和未折叠ACBP之间的平衡。这项研究表明,未折叠ACBP群体中有两类亚群体。一类在折叠过程中磁化可转移到折叠形式,另一类则未观察到转移。显然,后一类未折叠蛋白质分子在磁化转移实验的时间范围内不会折叠。这一结果表明存在一类具有高折叠倾向的酸解未折叠蛋白质分子亚群体。有人认为,在这个亚群体中,肽主链以及肽链侧链之间必须形成一组特定的类似天然的相互作用。

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