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首页> 外文期刊>PLoS Computational Biology >Exploring the sequence fitness landscape of a bridge between protein folds
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Exploring the sequence fitness landscape of a bridge between protein folds

机译:探索蛋白质折叠之间桥梁的序列健身景观

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Most foldable protein sequences adopt only a single native fold. Recent protein design studies have, however, created protein sequences which fold into different structures apon changes of environment, or single point mutation, the best characterized example being the switch between the folds of the GA and GB binding domains of streptococcal protein G. To obtain further insight into the design of sequences which can switch folds, we have used a computational model for the fitness landscape of a single fold, built from the observed sequence variation of protein homologues. We have recently shown that such coevolutionary models can be used to design novel foldable sequences. By appropriately combining two of these models to describe the joint fitness landscape of GA and GB, we are able to describe the propensity of a given sequence for each of the two folds. We have successfully tested the combined model against the known series of designed GA/GB hybrids. Using Monte Carlo simulations on this landscape, we are able to identify pathways of mutations connecting the two folds. In the absence of a requirement for domain stability, the most frequent paths go via sequences in which neither domain is stably folded, reminiscent of the propensity for certain intrinsically disordered proteins to fold into different structures according to context. Even if the folded state is required to be stable, we find that there is nonetheless still a wide range of sequences which are close to the transition region and therefore likely fold switches, consistent with recent estimates that fold switching may be more widespread than had been thought.
机译:大多数可折叠蛋白质序列仅采用单一的天然折叠。最近蛋白质设计的研究,然而,创建了折叠成不同的结构APON环境,或单点突变的改变蛋白质序列,最佳表征的例子是链球菌蛋白G的GA和GB结合结构域的折叠部之间的开关要获得进一步了解可以切换折叠的序列设计,我们使用了单一折叠的健身景观的计算模型,从观察到的蛋白质同源物的序列变异构建。我们最近显示这种共轭模型可用于设计新颖的可折叠序列。通过适当地组合这些模型中的两个来描述Ga和Gb的关节健身景观,我们能够描述两个折叠中的每一个的给定顺序的倾向。我们已成功测试了针对已知系列的设计GA / GB杂种系列的组合模型。在这种景观上使用Monte Carlo模拟,我们能够识别连接两倍的突变的途径。在没有域稳定性的要求中,最常见的路径通过序列进行,其中既不稳定地折叠,使得根据上下文使某些本机蛋白质折叠成不同结构的倾向。即使折叠状态必须是稳定的,我们发现有仍然还是一个宽范围的接近过渡区,因此有可能折叠开关,与最近的估计是一致的折叠开关可能会比已经更广泛的序列想法。

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