Hu Xin, Stebbins C Erec
Laboratory of Structural Microbiology, The Rockefeller University, New York, New York 10021, USA.
Proteins. 2006 Dec 1;65(4):843-55. doi: 10.1002/prot.21167.
The cytolethal distending toxin (CDT) is a widespread bacterial toxin that consists of an active subunit CdtB with nuclease activity and two ricin-like lectin domains, CdtA and CdtC, that are involved in the delivery of CdtB into the host cell. The three subunits form a tripartite complex that is required to achieve the fully active holotoxin. In the present study we investigate the assembly and dynamic properties of the CDT holotoxin using molecular dynamics simulations and binding free energy calculations. The results have revealed that CdtB likely adopts a different conformation in the unbound state with a closed DNA binding site. The two characterized structural elements of the aromatic patch and groove on the CdtA and CdtC protein surfaces exhibit high mobility, and free energy calculations show that the heterodimeric complex CdtA-CdtC, as well as the CdtA-CdtB and CdtB-CdtC sub-complexes are less energetically stable as compared to the binding in the tripartite complex. Analysis of the dynamical cross-correlation map reveals information on the correlated motions and long-range interplay among the CDT subunits associated with complex formation. Finally, the estimated binding free energies of subunit interactions are presented, together with the free energy decomposition to determine the contributions of residues for both binding partners, providing insight into the protein-protein interactions in the CDT holotoxin.
细胞致死性膨胀毒素(CDT)是一种广泛存在的细菌毒素,它由具有核酸酶活性的活性亚基CdtB以及两个蓖麻毒素样凝集素结构域CdtA和CdtC组成,这两个结构域参与将CdtB递送至宿主细胞。这三个亚基形成一个三方复合物,该复合物是形成完全活性全毒素所必需的。在本研究中,我们使用分子动力学模拟和结合自由能计算来研究CDT全毒素的组装和动力学性质。结果表明,CdtB在未结合状态下可能具有不同的构象,其DNA结合位点是封闭的。CdtA和CdtC蛋白表面上已表征的芳香族斑块和凹槽这两个结构元件表现出高流动性,自由能计算表明,与三方复合物中的结合相比,异二聚体复合物CdtA-CdtC以及CdtA-CdtB和CdtB-CdtC亚复合物在能量上不太稳定。对动力学交叉相关图的分析揭示了与复合物形成相关的CDT亚基之间的相关运动和长程相互作用的信息。最后,给出了亚基相互作用的估计结合自由能,以及自由能分解以确定两个结合伙伴的残基贡献,从而深入了解CDT全毒素中的蛋白质-蛋白质相互作用。