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Solution structure of Compstatin, a potent complement inhibitor.

机译:康普他汀(一种有效的补体抑制剂)的溶液结构。

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摘要

The third component of complement, C3, plays a central role in activation of the classical, alternative, and lectin pathways of complement activation. Recently, we have identified a 13-residue cyclic peptide (named Compstatin) that specifically binds to C3 and inhibits complement activation. To investigate the topology and the contribution of each critical residue to the binding of Compstatin to C3, we have now determined the solution structure using 2D NMR techniques; we have also synthesized substitution analogues and used these to study the structure-function relationships involved. Finally, we have generated an ensemble of a family of solution structures of the peptide with a hybrid distance geometry-restrained simulated-annealing methodology, using distance, dihedral angle, and 3J(NH-Halpha)-coupling constant restraints. The Compstatin structure contained a type I beta-turn comprising the segment Gln5-Asp6-Trp7-Gly8. Preference for packing of the hydrophobic side chains of Val3, Val4, and Trp7 was observed. The generated structure was also analyzed for consistency using NMR parameters such as NOE connectivity patterns, 3J(NH-Halpha)-coupling constants, and chemical shifts. Analysis of Ala substitution analogues suggested that Val3, Gln5, Asp6, Trp7, and Gly8 contribute significantly to the inhibitory activity of the peptide. Substitution of Gly8 caused a 100-fold decrease in inhibitory potency. In contrast, substitution of Val4, His9, His10, and Arg11 resulted in minimal change in the activity. These findings indicate that specific side-chain interactions and the beta-turn are critical for preservation of the conformational stability of Compstatin and they might be significant for maintaining the functional activity of Compstatin.
机译:补体的第三部分C3在补体激活的经典,替代和凝集素途径的激活中起着核心作用。最近,我们已经鉴定出一种13个残基的环状肽(称为Compstatin),可以特异性结合C3并抑制补体激活。为了研究拓扑结构和每个关键残基对坎普他汀与C3结合的贡献,我们现在使用2D NMR技术确定了溶液结构。我们还合成了取代类似物,并用它们来研究所涉及的结构-功能关系。最后,我们使用距离,二面角和3J(NH-Halpha)耦合常数约束,使用混合距离几何约束的模拟退火方法生成了肽溶液结构家族的集合。坎普他汀结构包含I型β-转角,其包含区段Gln5-Asp6-Trp7-Gly8。观察到优选包装Val3,Val4和Trp7的疏水性侧链。还使用NMR参数(例如NOE连接模式,3J(NH-Halpha)耦合常数和化学位移)分析了生成的结构的一致性。 Ala取代类似物的分析表明,Val3,Gln5,Asp6,Trp7和Gly8对该肽的抑制活性有显着贡献。 Gly8的取代导致抑制力下降100倍。相反,Val4,His9,His10和Arg11的取代导致活性的最小变化。这些发现表明,特定的侧链相互作用和β-转角对于保持坎普他汀的构象稳定性是至关重要的,并且对于维持坎普他汀的功能活性可能是重要的。

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