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首页> 外文期刊>Journal of Molecular Biology >NMR analysis of partially folded states and persistent structure in the alpha subunit of tryptophan synthase: Implications for the equilibrium folding mechanism of a 29-kDa TIM barrel protein
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NMR analysis of partially folded states and persistent structure in the alpha subunit of tryptophan synthase: Implications for the equilibrium folding mechanism of a 29-kDa TIM barrel protein

机译:色氨酸合酶α亚基中部分折叠状态和持久结构的NMR分析:对29 kDa TIM桶状蛋白平衡折叠机制的影响

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Structural insights into the equilibrium folding mechanism of the alpha subunit of tryptophan synthase (alpha TS) from Escherichia coli, a (beta alpha)(8) TIM barrel protein, were obtained with a pair of complementary nuclear magnetic resonance (NMR) spectroscopic techniques. The secondary structures of rare high-energy partially folded states were probed by native-state hydrogen-exchange NMR analysis of main-chain amide hydrogens. 2D heteronuclear single quantum coherence NMR analysis of several N-15-labeled nonpolar an-Lino acids was used to probe the side chains involved in stabilizing a highly denatured intermediate that is devoid of secondary structure. The dynamic broadening of a subset of isoleucine and leucine side chains and the absence of protection against exchange showed that the highest energy folded state on the free-energy landscape is stabilized by a hydrophobic cluster lacking stable secondary structure. The core of this cluster, centered near the N-terminus of alpha TS, serves as a nucleus for the stabilization of what appears to be normative secondary structure in a marginally stable intermediate. The progressive decrease in protection against exchange from this nucleus toward both termini and from the N-termini to the C-termini of several beta-strands is best described by an ensemble of weakly coupled conformers. Comparison with previous data strongly suggests that this ensemble corresponds to a marginally stable off-pathway intermediate that arises in the first few milliseconds of folding and persists under equilibrium conditions. A second, more stable intermediate, which has an intact beta-barrel and a frayed alpha-helical shell, coexists with this marginally stable species. The conversion of the more stable intermediate to the native state of aTS entails the formation of a stable helical shell and completes the acquisition of the tertiary structure. (c) 2007 Elsevier Ltd. All rights reserved.
机译:通过一对互补核磁共振(NMR)光谱技术获得了对大肠杆菌色氨酸合酶(αTS)的α亚基(βalpha)(8)TIM桶蛋白的平衡折叠机制的结构见解。稀有的高能部分折叠状态的二级结构通过主链酰胺氢的天然态氢交换NMR分析进行探测。几种N-15标记的非极性an-Lino酸的2D异核单量子相干NMR分析用于探测涉及稳定二级结构的高度变性中间体稳定化的侧链。异亮氨酸和亮氨酸侧链的一个子集的动态加宽以及缺乏交换保护作用的结果表明,自由能态上的最高能量折叠状态被缺乏稳定二级结构的疏水簇所稳定。该簇的核心位于αTS的N端附近,是一个核,用于稳定边缘稳定中间体中似乎是标准二级结构的核。弱耦合构象体的集合最好地描述了从该核向两个末端以及从多个β链的N末端至C末端交换的保护作用的逐步降低。与先前数据的比较强烈表明,该合奏对应于边缘稳定的偏航中间体,该中间体在折叠的前几毫秒出现,并在平衡条件下持续存在。第二种更稳定的中间体与该边缘稳定的物种共存,该中间体具有完整的β桶和磨损的α螺旋壳。从更稳定的中间体到aTS的天然状态的转化需要形成稳定的螺旋壳,并完成三级结构的获得。 (c)2007 Elsevier Ltd.保留所有权利。

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