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首页> 外文期刊>Journal of Molecular Biology >When the Scaffold Cannot Be Ignored: The Role of the Hydrophobic Core in Ligand Binding and Specificity
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When the Scaffold Cannot Be Ignored: The Role of the Hydrophobic Core in Ligand Binding and Specificity

机译:当无法忽略支架:疏水核心在配体结合和特异性中的作用。

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The traditional view of protein ligand binding treats a protein as comprising distinct binding epitopes on the surface of a degenerate structural scaffold, largely ignoring the impact of a protein's energy landscape. To determine the robustness of this simplification, we compared two small helix turn helix transcription factors with different energy landscapes. A-Repressor is stable and well folded, while MarA appears to be marginally stable with multiple native conformations (molten). While A-repressor is known to tolerate any hydrophobic mutation in the core, we find MarA drastically less tolerant to core mutation. Moreover, core mutations in MarA (distant from the DNA-binding interface) change the relative affinities of its binding partners, altering ligand specificity. These results can be explained by taking into account the effects of mutations on the entire energy landscape and not just the native state. Thus, for proteins with multiple conformations that are close in energy, such as many intrinsically disordered proteins, residues distant from the active site can alter both binding affinity and specificity. (c) 2015 Elsevier Ltd. All rights reserved.
机译:蛋白质配体结合的传统观点将蛋白质视为在简并结构支架表面上包含独特的结合表位,而很大程度上忽略了蛋白质能量格局的影响。为了确定这种简化的鲁棒性,我们比较了两个具有不同能量分布的小螺旋转螺旋转录因子。 A-阻遏物是稳定的并且折叠良好,而MarA似乎在具有多种天然构象(熔融)时略微稳定。虽然已知A-阻遏物可耐受核心中的任何疏水性突变,但我们发现MarA对核心突变的耐受性大大降低。此外,MarA中的核心突变(远离DNA结合界面)会改变其结合伴侣的相对亲和力,从而改变配体特异性。这些结果可以通过考虑突变对整个能源格局的影响而不仅仅是天然状态来解释。因此,对于具有紧密能量的多个构象的蛋白质,例如许多内在无序的蛋白质,远离活性位点的残基可以改变结合亲和力和特异性。 (c)2015 Elsevier Ltd.保留所有权利。

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