The relative contributions of chain topology and amino acid sequence in directing the folding of a (betaalpha)(8) TIM barrel protein of unknown function encoded by the Bacillus subtilis iolI gene (IOLI) were assessed by reversible urea denaturation and a combination of circular dichroism, fluorescence and time-resolved fluorescence anisotropy spectroscopy. The equilibrium reaction for IOLI involves, in addition to the native and unfolded species, a stable intermediate with significant secondary structure and stability and self-associated forms of both the native and intermediate states. Global kinetic analysis revealed that the unfolded state partitions between an off-pathway refolding intermediate and the on-pathway equilibrium intermediate early in folding. Comparisons with the folding mechanisms of two other TIM barrel proteins, indole-3-glycerol phosphate synthase from the thermophile Sulfolobus solfataricus (sIGPS) and the alpha subunit of Escherichia coli tryptophan synthase (alphaTS), reveal striking similarities that argue for a dominant role of the topology in both early and late events in folding. Sequence-specific effects are apparent in the magnitudes of the relaxation times and relative stabilities, in the presence of additional monomeric folding intermediates for alphaTS and sIGPS and in rate-limiting proline isomerization reactions for alphaTS.

译文

:通过可逆的尿素变性和环状结合的方法评估了链拓扑结构和氨基酸序列在指导由枯草芽孢杆菌iolI基因(IOLI)编码的未知功能的βα(8)TIM桶蛋白折叠中的相对贡献二向色性,荧光和时间分辨荧光各向异性光谱。除了天然和未折叠的物种外,IOLI的平衡反应还涉及具有明显二级结构和稳定性以及天然状态和中间状态的自缔合形式的稳定中间体。全局动力学分析显示,折叠初期,未折叠状态在非通路折叠中间体和通路平衡中间体之间分配。与其他两种TIM桶蛋白的折叠机制进行比较,即嗜热嗜盐菌(sulfolobus solfataricus)的吲哚-3-甘油磷酸合酶(sIGPS)和大肠杆菌色氨酸合酶(alphaTS)的α亚基,发现了惊人的相似之处,这些相似之处证明了它们的主导作用折叠中早期和晚期事件中的拓扑。在存在额外的αTS和sIGPS单体折叠中间体的情况下,以及在αTS的限速脯氨酸异构化反应中,序列特异性效应在弛豫时间和相对稳定性的大小上很明显。

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