Wilson Corey J, Das Payel, Clementi Cecilia, Matthews Kathleen S, Wittung-Stafshede Pernilla
Department of Biochemistry and Cell Biology, Keck Center for Structural Computational Biology, and Department of Chemistry, Rice University, 6100 Main Street, Houston, TX 77251, USA.
Proc Natl Acad Sci U S A. 2005 Oct 11;102(41):14563-8. doi: 10.1073/pnas.0505808102. Epub 2005 Oct 3.
To probe the experimental folding behavior of a large protein with complex topology, we created a monomeric variant of the lactose repressor protein (MLAc), a well characterized tetrameric protein that regulates transcription of the lac operon. Purified MLAc is folded, fully functional, and binds the inducer isopropyl beta-d-thiogalactoside with the same affinity as wild-type LacI. Equilibrium unfolding of MLAc induced by the chemical denaturant urea is a reversible, apparent two-state process (pH 7.5, 20 degrees C). However, time-resolved experiments demonstrate that unfolding is single-exponential, whereas refolding data indicate two transient intermediates. The data reveal the initial formation of a burst-phase (tau < ms) intermediate that corresponds to approximately 50% of the total secondary-structure content. This step is followed by a rearrangement reaction that is rate-limited by an unfolding process (tau approximately 3 s; pH 7.5, 20 degrees C) and results in a second intermediate. This MLAc intermediate converts to the native structure (tau approximately 30 s; pH 7.5, 20 degrees C). Remarkably, the experimental folding-energy landscape for MLAc is in excellent agreement with theoretical predictions using a simple topology-based C(alpha)-model as presented in a companion article in this issue.
为了探究具有复杂拓扑结构的大型蛋白质的实验折叠行为,我们构建了乳糖阻遏蛋白的单体变体(MLAc),乳糖阻遏蛋白是一种已被充分表征的四聚体蛋白,可调节乳糖操纵子的转录。纯化后的MLAc已折叠且功能完备,它与诱导剂异丙基-β-D-硫代半乳糖苷结合的亲和力与野生型LacI相同。由化学变性剂尿素诱导的MLAc平衡去折叠是一个可逆的、明显的两态过程(pH 7.5,20摄氏度)。然而,时间分辨实验表明去折叠是单指数过程,而重折叠数据则显示有两个瞬时中间体。数据揭示了一个爆发相(τ < 毫秒)中间体的初始形成,该中间体约占总二级结构含量的50%。此步骤之后是一个重排反应,该反应受去折叠过程限速(τ约为3秒;pH 7.5,20摄氏度),并产生第二个中间体。这个MLAc中间体转变为天然结构(τ约为30秒;pH 7.5,20摄氏度)。值得注意的是,MLAc的实验折叠能量景观与使用本期一篇配套文章中提出的基于简单拓扑结构的Cα模型的理论预测结果高度吻合。