Rajamani Deepa, Thiel Spencer, Vajda Sandor, Camacho Carlos J
Departments of Biology and Biomedical Engineering and Bioinformatics Program, Boston University, Boston, MA 02215, USA.
Proc Natl Acad Sci U S A. 2004 Aug 3;101(31):11287-92. doi: 10.1073/pnas.0401942101. Epub 2004 Jul 21.
We show that the mechanism for molecular recognition requires one of the interacting proteins, usually the smaller of the two, to anchor a specific side chain in a structurally constrained binding groove of the other protein, providing a steric constraint that helps to stabilize a native-like bound intermediate. We identify the anchor residues in 39 protein-protein complexes and verify that, even in the absence of their interacting partners, the anchor side chains are found in conformations similar to those observed in the bound complex. These ready-made recognition motifs correspond to surface side chains that bury the largest solvent-accessible surface area after forming the complex (> or =100 A2). The existence of such anchors implies that binding pathways can avoid kinetically costly structural rearrangements at the core of the binding interface, allowing for a relatively smooth recognition process. Once anchors are docked, an induced fit process further contributes to forming the final high-affinity complex. This later stage involves flexible (solvent-exposed) side chains that latch to the encounter complex in the periphery of the binding pocket. Our results suggest that the evolutionary conservation of anchor side chains applies to the actual structure that these residues assume before the encounter complex and not just to their loci. Implications for protein docking are also discussed.
我们表明,分子识别机制要求相互作用的蛋白质之一,通常是两者中较小的那个,将特定侧链锚定在另一个蛋白质结构受限的结合凹槽中,提供空间限制,有助于稳定类似天然的结合中间体。我们在39个蛋白质-蛋白质复合物中鉴定出锚定残基,并验证即使在没有相互作用伴侣的情况下,锚定侧链的构象也与结合复合物中观察到的构象相似。这些现成的识别基序对应于在形成复合物后掩埋最大溶剂可及表面积(>或=100 Ų)的表面侧链。这种锚定的存在意味着结合途径可以避免在结合界面核心处进行动力学上代价高昂的结构重排,从而实现相对平滑的识别过程。一旦锚定对接,诱导契合过程进一步有助于形成最终的高亲和力复合物。这个后期阶段涉及灵活的(溶剂暴露的)侧链,它们在结合口袋的外围锁定到相遇复合物上。我们的结果表明,锚定侧链的进化保守性适用于这些残基在相遇复合物之前所呈现的实际结构,而不仅仅是它们的位点。还讨论了对蛋白质对接的影响。