Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, 364 Plantation Street, Worcester, MA 01605, USA.
J Mol Biol. 2013 Mar 25;425(6):1065-81. doi: 10.1016/j.jmb.2013.01.002. Epub 2013 Jan 16.
Imidazole-3-glycerol phosphate synthase is a heterodimeric allosteric enzyme that catalyzes consecutive reactions in imidazole biosynthesis through its HisF and HisH subunits. The unusually slow unfolding reaction of the isolated HisF TIM barrel domain from the thermophilic bacteria, Thermotoga maritima, enabled an NMR-based site-specific analysis of the main-chain hydrogen bonds that stabilize its native conformation. Very strong protection against exchange with solvent deuterium in the native state was found in a subset of buried positions in α-helices and pervasively in the underlying β-strands associated with a pair of large clusters of isoleucine, leucine and valine (ILV) side chains located in the α7(βα)8(βα)1-2 and α2(βα)3-6β7 segments of the (βα)8 barrel. The most densely packed region of the large cluster, α3(βα)4-6β7, correlates closely with the core of stability previously observed in computational, protein engineering and NMR dynamics studies, demonstrating a key role for this cluster in determining the thermodynamic and structural properties of the native state of HisF. When considered with the results of previous studies where ILV clusters were found to stabilize the hydrogen-bonded networks in folding intermediates for other TIM barrel proteins, it appears that clusters of branched aliphatic side chains can serve as cores of stability across the entire folding reaction coordinate of one of the most common motifs in biology.
咪唑甘油磷酸合酶是一种异源二聚体变构酶,通过其 HisF 和 HisH 亚基催化咪唑生物合成中的连续反应。来自嗜热细菌 Thermotoga maritima 的分离 HisF TIM 桶结构域的异常缓慢的解折叠反应,使我们能够通过 NMR 进行基于位置的特异性分析,以确定稳定其天然构象的主链氢键。在天然状态下,与溶剂氘交换非常强的保护作用在α-螺旋和与之相关的β-链中普遍存在,这些位置位于(βα)8 桶的α7(βα)8(βα)1-2 和α2(βα)3-6β7 段中的一对大的异亮氨酸、亮氨酸和缬氨酸(ILV)侧链簇中。大簇中最密集的区域α3(βα)4-6β7,与先前在计算、蛋白质工程和 NMR 动力学研究中观察到的稳定性核心密切相关,表明该簇在确定 HisF 天然状态的热力学和结构性质方面起着关键作用。当与先前的研究结果结合考虑时,这些结果表明 ILV 簇稳定了其他 TIM 桶蛋白折叠中间体中的氢键网络,这表明支链脂肪侧链簇可以作为整个折叠反应坐标的稳定性核心之一,这是生物学中最常见的基序之一。