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关于Jun卷曲螺旋折叠/解折叠的位点特异性实验:来自亮氨酸-18处自旋反转转移核磁共振的热力学和动力学参数

Site-specific experiments on folding/unfolding of Jun coiled coils: thermodynamic and kinetic parameters from spin inversion transfer nuclear magnetic resonance at leucine-18.

作者信息

d'Avignon D André, Bretthorst G Larry, Holtzer Marilyn Emerson, Schwarz Kathleen A, Angeletti Ruth Hogue, Mints Lisa, Holtzer Alfred

机构信息

Department of Chemistry, Washington University, Campus Box 1134, One Brookings Drive, St. Louis, MO 63130-4899, USA.

出版信息

Biopolymers. 2006 Oct 15;83(3):255-67. doi: 10.1002/bip.20555.

Abstract

The 32-residue leucine zipper subsequence, called here Jun-lz, associates in benign media to form a parallel two-stranded coiled coil. Studies are reported of its thermal unfolding/folding transition by circular dichroism (CD) on samples of natural isotopic abundance and by both equilibrium and spin inversion transfer (SIT) nuclear magnetic resonance (NMR) on samples labeled at the leucine-18 alpha-carbon with 99% 13C. The data cover a wide range of temperature and concentration, and show that Jun-lz unfolds below room temperature, being far less stable than some other leucine zippers such as GCN4. 13C-NMR shows two well-separated resonances. We ascribe the upfield one to 13C spins on unfolded single chains and the downfield one to 13C spins on coiled-coil dimers. Their relative intensities provide a measure of the unfolding equilibrium constant. In SIT NMR, the recovery of the equilibrium magnetization after one resonance is inverted is modulated in part by the unfolding and folding rate constants, which are accessible from the data. Global Bayesian analysis of the equilibrium and SIT NMR data provide values for the standard enthalpy, entropy, and heat capacity of unfolding, and show the latter to be unusually large. The CD results are compatible with the NMR findings. Global Bayesian analysis of the SIT NMR data yields the corresponding activation parameters for unfolding and folding. The results show that both reaction directions are activated processes. Activation for unfolding is entropy driven, enthalpy opposed. Activation for folding is strongly enthalpy opposed and somewhat entropy opposed, falsifying the idea that the barrier for folding is solely due to a purely entropic search for properly registered partners. The activation heat capacity is much larger for folding, so almost the entire overall change is due to the folding direction. This latter finding, if it applies to GCN4 leucine zippers, clears up an extant apparent disagreement between folding rate constants for GCN4 as determined by chevron analysis and NMR in differing temperature regimes.

摘要

这个由32个残基组成的亮氨酸拉链子序列,在此称为Jun-lz,在良性介质中缔合形成平行的双链卷曲螺旋。本文报道了通过圆二色性(CD)对天然同位素丰度样品进行热解折叠/折叠转变的研究,以及通过平衡和自旋反转转移(SIT)核磁共振(NMR)对在亮氨酸-18α-碳上标记有99% 13C的样品进行的研究。数据涵盖了广泛的温度和浓度范围,结果表明Jun-lz在室温以下就会解折叠,其稳定性远低于其他一些亮氨酸拉链,如GCN4。13C-NMR显示出两个明显分开的共振峰。我们将高场的共振峰归因于未折叠单链上的13C自旋,而低场的共振峰归因于卷曲螺旋二聚体上的13C自旋。它们的相对强度提供了一个解折叠平衡常数的度量。在SIT NMR中,一个共振峰反转后平衡磁化强度的恢复部分受到解折叠和折叠速率常数的调制,这些常数可从数据中获得。对平衡和SIT NMR数据进行全局贝叶斯分析,得到了解折叠的标准焓、熵和热容值,并表明后者异常大。CD结果与NMR发现相符。对SIT NMR数据进行全局贝叶斯分析,得到了解折叠和折叠相应的活化参数。结果表明,两个反应方向都是活化过程。解折叠的活化是由熵驱动的,焓起阻碍作用。折叠的活化强烈地受到焓的阻碍,并且在一定程度上受到熵的阻碍,这推翻了折叠障碍仅仅是由于对正确配对的伙伴进行纯粹熵搜索的观点。折叠的活化热容要大得多,所以几乎整个总体变化都归因于折叠方向。如果这一发现适用于GCN4亮氨酸拉链,那么就消除了在不同温度范围内通过雪佛龙分析和NMR测定的GCN4折叠速率常数之间现存的明显分歧。

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