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beta-Structure within the Denatured State of the Helical Protein Domain BBL

机译:螺旋蛋白结构域BBL变性状态下的β结构

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摘要

Protein denatured states are the origin of both healthy and toxic conformational species. Denatured states of ultrafast folding proteins are of interest in mechanistic studies because they are energetically close to the kinetic bottleneck of folding. However, their transient nature makes them elusive to experiment. Here, we generated the denatured state of the helical domain BBL that is poised to fold in microseconds by a single-point mutation and combined circular dichroism spectroscopy, single-molecule fluorescence fluctuation analysis, and computer simulation to characterize its structure and dynamics. Circular dichroism showed a largely unfolded ensemble with marginal helix but significant beta-sheet content. Main-chain structure and dynamics were unaffected by side-chain interactions that stabilize the native state, as revealed by site-directed mutagenesis and nanosecond loop closure kinetics probed by fluorescence correlation spectroscopy. Replica-exchange and constant-temperature molecular dynamics simulations showed a highly collapsed, hydrogen-bonded denatured state containing turn and beta-sheet structure and few nucleating helices in an otherwise unfolded ensemble. An irregular beta-hairpin element that connects helices in the native fold was poised to be formed. The surprising observation of beta-structure in regions that form helices in the native state is reconciled by a generic low-energy pathway from the northwest quadrant of Ramachandran space to the helical basin present under folding conditions, proposed recently. Our results show that, indeed, rapid nucleation of helix emanates from beta-structure formed early within a collapsed ensemble of unfolded conformers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:蛋白质变性状态是健康和有毒构象物种的起源。超快折叠蛋白的变性状态在机理研究中引起关注,因为它们在能量上接近折叠的动力学瓶颈。但是,它们的瞬态特性使他们难以进行实验。在这里,我们生成了螺旋结构域BBL的变性状态,该状态通过单点突变和组合圆二色谱,单分子荧光波动分析以及计算机模拟来表征其结构和动力学,从而可以在几微秒内折叠。圆二色性显示出整体展开,具有边缘螺旋,但β-折叠含量明显。定点诱变和荧光相关光谱法探测的纳秒级闭环动力学揭示了主链结构和动力学不受稳定天然状态的侧链相互作用的影响。复制子交换和恒温分子动力学模拟显示高度折叠,氢键键合的变性状态,包含转向和β-折叠结构,在未展开的集合中几乎没有成核螺旋。一个不规则的β-发夹元件将天然折叠中的螺旋连接起来,即将形成。最近提出,从拉马坎德兰空间的西北象限到在折叠条件下存在的螺旋盆地的通用低能途径,与在原始状态下形成螺旋的区域中的β结构的令人惊讶的观察相符。我们的结果表明,实际上,螺旋结构的快速成核是在未折叠构象异构体的塌陷集合中早期形成的β结构形成的。 (C)2015 Elsevier Ltd.保留所有权利。

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