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The transition state of the ras binding domain of raf is structurally polarized based on phi-values but is energetically diffuse

机译:raf ras结合域的过渡态基于phi值在结构上极化,但在能量上呈扩散状态

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The ras binding domain (RBD) of the Ser/Thr kinase c-Raf/Raf-1 spans 78 residues and adopts a structure characteristic of the beta-grasp ubiquitin-like topology. Recently, the primary sequence of Raf RBD has been nearly exhaustively mutated experimentally by insertion of stretches of degenerate codons, which revealed sequence conservation and hydrophobic core organization similar to that found in an alignment of beta-grasp ubiquitin-like proteins. These results now allow us to examine the relationship between sequence conservation and the folding process, particularly viewed through the analysis of transition state (TS) structure. Specifically, we present herein a protein engineering study combining classic truncation (Ala/Gly) and atypical mutants to predict folding TS ensemble properties. Based on classical Phi-value analysis, Raf RBD TS structure is particularly polarized around the N-terminal beta-hairpin. However, all residues constituting the inner layer of the hydrophobic core are involved in TS stabilization, although they are clearly found in a less native-like environment. The TS structure can also be probed by a direct measure of its destabilization upon mutation, Delta Delta G(U-++). Viewed through this analysis, Raf RBD TS is a more diffuse structure, in which all residues of the hydrophobic core including beta-strands 1, 2, 3 and 5 and the major alpha-helix play similar roles in TS stabilization. In addition, Phi-values and Delta Delta G(U-++) reveal strikin similaritie in the TS of Raf RBD and ubiquitin, a structural analogue displaying insignificant sequence identity (< 12%). However, ubiquitin TS appears more denatured-like and polarized around the N-terminal beta-hairpin. We suggest that analysis of Phi-values should also consider the direct impact of mutations on differences in free energy between the unfolded and TS (Delta Delta GU(-++)) to ensure that the description of TS properties is accurate. Finally, the impact of these findings on the modeling of protein folding is discussed. (c) 2006 Elsevier Ltd. All rights reserved.
机译:Ser / Thr激酶c-Raf / Raf-1的ras结合结构域(RBD)跨越78个残基,并采用β-抓握泛素样拓扑结构的结构特征。最近,Raf RBD的主要序列已通过插入简并密码子的片段进行了几乎穷举性的突变,这揭示了序列保守性和疏水性核心组织,类似于在β-抓握泛素样蛋白的比对中发现的序列。现在,这些结果使我们能够检查序列保守性和折叠过程之间的关系,尤其是通过分析过渡态(TS)结构来观察。具体而言,我们在本文中进行了蛋白质工程研究,该研究结合了经典的截断(Ala / Gly)和非典型突变体,以预测折叠TS集成特性。根据经典的Phi值分析,Raf RBD TS结构在N端β-发夹周围特别极化。然而,尽管显然在不太天然的环境中发现了构成疏水性核内层的所有残基,但它们都参与了TS稳定化。 TS结构也可以通过直接测量其突变后的不稳定性Delta Delta G(U-++)来探测。通过此分析,Raf RBD TS是一个更加分散的结构,其中疏水性核心的所有残基(包括β链1、2、3和5和主要的α-螺旋)在TS稳定中起着相似的作用。此外,Phi值和Delta Delta G(U-++)揭示了Raf RBD和泛素的结构中的strikin相似性,泛素是一种结构类似物,显示出无关紧要的序列同一性(<12%)。但是,遍在蛋白TS看起来更变性,并在N端β发夹周围极化。我们建议对Phi值的分析还应考虑突变对未折叠和TS之间的自由能差异的直接影响(Delta Delta GU(-++)),以确保TS属性的描述准确。最后,讨论了这些发现对蛋白质折叠建模的影响。 (c)2006 Elsevier Ltd.保留所有权利。

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