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首页> 外文期刊>Journal of Molecular Biology >Massive sequence perturbation of the Raf ras binding domain reveals relationships between sequence conservation, secondary structure propensity, hydrophobic core organization and stability
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Massive sequence perturbation of the Raf ras binding domain reveals relationships between sequence conservation, secondary structure propensity, hydrophobic core organization and stability

机译:Raf ras结合域的大规模序列扰动揭示了序列保守性,二级结构倾向性,疏水核心组织和稳定性之间的关系

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摘要

The contributions of specific residues to the delicate balance between function, stability and folding rates could be determined, in part comparing the sequences of structures having identical folds, but insignificant sequence homology. Recently, we have devised an experimental strategy to thoroughly explore residue substitutions consistent with a specific class of structure. Using this approach, the amino acids tolerated at virtually all residues of the c-Raf/Raf1 ras binding domain (Raf RBD), an exemplar of the common beta-grasp ubiquitin-like topology, were obtained and used to define the sequence determinants of this fold. Herein, we present analyses suggesting that more subtle sequence selection pressure, including propensity for secondary structure, the hydrophobic core organization and charge distribution are imposed on the Raf RBD sequence. Secondly, using the Gibbs free energies (Delta G(F-U)) obtained for 51 mutants of Raf RBD, we demonstrate a strong correlation between amino acid conservation and the destabilization induced by truncating mutants. In addition, four mutants are shown to significantly stabilize Raf RBD native structure. Two of these mutations, including the well-studied R89L, are known to severely compromise binding affinity for ras. Another stabilized mutant consisted of a deletion of amino acid residues E104-K106. This deletion naturally occurs in the homologues a-Raf and b-Raf and could indicate functional divergence. Finally, the combination of mutations affecting five of 78 residues of Raf RBD results in stabilization of the structure by approximately 12 kJ mol(-1) (Delta G(F-U) is -22 and -34 kJ mol(-1) for wt and mutant, respectively). The sequence perturbation approach combined with sequence/structure analysis of the ubiquitin-like fold provide a basis for the identification of sequence-specific requirements for function, stability and folding rate of the Raf RBD and structural analogues, highlighting the utility of conservation profiles as predictive tools of structural organization. (c) 2006 Elsevier Ltd. All rights reserved.
机译:可以确定特定残基对功能,稳定性和折叠速率之间微妙平衡的贡献,部分比较具有相同折叠但无关紧要的序列的结构。最近,我们设计了一种实验策略来彻底探索与特定结构类别一致的残基取代。使用这种方法,获得了在c-Raf / Raf1 ras结合结构域(Raf RBD)的几乎所有残基上都能耐受的氨基酸,该残基是常见的β-抓图泛素样拓扑结构的典范,并用于定义以下序列的决定簇:这折。在这里,我们目前的分析表明,Raf RBD序列受到更细微的序列选择压力,包括二级结构的倾向,疏水性核心组织和电荷分布。其次,使用Raf RBD的51个突变体获得的吉布斯自由能(Delta G(F-U)),我们证明了氨基酸保守性与截短突变体引起的去稳定化之间有很强的相关性。另外,显示四个突变体显着稳定Raf RBD天然结构。这些突变中的两个,包括经过充分研究的R89L,已知会严重损害对ras的结合亲和力。另一个稳定的突变体由氨基酸残基E104-K106的缺失组成。这种缺失自然发生在同系物a-Raf和b-Raf中,可能表明功能上的差异。最后,影响Raf RBD的78个残基中的五个残基的突变组合导致结构稳定约12 kJ mol(-1)(wt和Delta G(FU)为-22和-34 kJ mol(-1)突变体)。序列扰动方法与泛素样折叠的序列/结构分析相结合,为鉴定Raf RBD和结构类似物的功能,稳定性和折叠速率的序列特定要求提供了基础,突出了保守性概况作为预测的效用结构组织的工具。 (c)2006 Elsevier Ltd.保留所有权利。

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