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Normal-Mode-Analysis-Guided Investigation of Crucial Intersubunit Contacts in the cAMP-Dependent Gating in HCN Channels

机译:HCN通道中cAMP依赖性门控中关键亚基接触的正常模式分析指导研究

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摘要

Protein structures define a complex network of atomic interactions in three dimensions. Direct visualization of the structure and analysis of the interaction potential energy are not straightforward approaches to pinpoint the atomic contacts that are crucial for protein function. We used the tetrameric hyperpolarization-activated cAMP-regulated (HCN) channel as a model system to study the intersubunit contacts in cAMP-dependent gating. To obtain a systematic survey of the contacts between each pair of residues, we used normal-mode analysis, a computational approach for studying protein dynamics, and constructed the covariance matrix for C-α atoms. The significant contacts revealed by covariance analysis were further investigated by means of mutagenesis and functional assays. Among the mutant channels that show phenotypes different from those of the wild-type, we focused on two mutant channels that express opposite changes in cAMP-dependent gating. Subsequent biochemical assays on isolated C-terminal fragments, including the cAMP binding domain, revealed only minimal effects on cAMP binding, suggesting the necessity of interpreting the cAMP-dependent allosteric regulation at the whole-channel level. For this purpose, we applied the patch-clamp fluorometry technique and observed correlated changes in the dynamic, state-dependent cAMP binding in the mutant channels. This study not only provides further understanding of the intersubunit contacts in allosteric coupling in the HCN channel, it also illustrates an effective strategy for delineating important atomic contacts within a structure.
机译:蛋白质结构在三个维度上定义了复杂的原子相互作用网络。结构的直接可视化和相互作用势能的分析并不是确定蛋白质功能至关重要的原子接触的简单方法。我们使用四聚体超极化激活的cAMP调节(HCN)通道作为模型系统,以研究cAMP依赖性门控中的亚基间接触。为了获得对每对残基之间接触的系统调查,我们使用了正常模式分析(一种研究蛋白质动力学的计算方法),并构建了C-α原子的协方差矩阵。通过诱变和功能分析进一步研究了由协方差分析揭示的重要联系。在表现出与野生型不同的表型的突变通道中,我们集中于两个在cAMP依赖性门控中表达相反变化的突变通道。随后对分离的C端片段(包括cAMP结合域)进行的生化分析显示,对cAMP结合的影响极小,表明有必要在全通道水平上解释cAMP依赖的变构调节。为此,我们应用了膜片钳荧光法,并观察了突变通道中动态的,依赖状态的cAMP结合的相关变化。这项研究不仅进一步了解了HCN通道的变构偶联中的亚基间接触,而且还阐明了描述结构内重要原子接触的有效策略。

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