Department of Computer Science and Engineering, Toyohashi University of Technology, Tempaku-cho, Toyohashi, Aichi, 441-8580, Japan.
J Mol Model. 2019 Jun 16;25(7):192. doi: 10.1007/s00894-019-4087-3.
The transcription mechanism of genetic information from DNA to RNA is efficiently controlled by regulatory proteins, such as catabolite activator protein (CAP), and their ligands. When cyclic AMP (cAMP) binds to CAP, the complex forms a dimer and binds specifically to DNA to activate the transcription mechanism. On the other hand, when cyclic GMP (cGMP) binds to CAP, the complex has no marked effect on the mechanism. In our previous study, based on molecular dynamics (MD) and ab initio fragment molecular orbital (FMO) methods, we elucidated which residues of CAP are important for the specific interactions between CAP and DNA in the CAP-monomer+DNA + cAMP complex. However, this monomer model for CAP cannot describe real interactions between the CAP-dimer and DNA because CAPs form a dimer before binding to DNA. Accordingly, here, we investigated stable structures and their electronic states for the CAP-dimer+DNA complex with cAMP or cGMP ligand, to clarify the influence of ligand-binding on the interactions between CAP-dimer and DNA. The MD simulations elucidated that the DNA-binding domains of CAP-dimer behave differently depending on the ligand bound to the CAP-dimer. In addition, FMO calculations revealed that the binding energy between CAP-dimer and DNA for the CAP-dimer+DNA + cAMP complex is larger than that for the CAP-dimer+DNA + cGMP complex, being consistent with experiments. It was also highlighted that the Arg185 and Lys188 residues of CAP-dimer are important for the binding between CAP-dimer and DNA. These results provide useful information for proposing new compounds that efficiently control the transcription mechanism.
遗传信息从 DNA 转录到 RNA 的机制被调节蛋白(如分解代谢物激活蛋白(CAP)及其配体)有效控制。当环腺苷酸(cAMP)与 CAP 结合时,复合物形成二聚体并特异性结合 DNA 以激活转录机制。另一方面,当环鸟苷酸(cGMP)与 CAP 结合时,该复合物对机制没有明显影响。在我们之前的研究中,基于分子动力学(MD)和从头算片段分子轨道(FMO)方法,我们阐明了 CAP 的哪些残基对于 CAP 与 DNA 之间的特异性相互作用是重要的,在 CAP-单体+DNA+ cAMP 复合物中。然而,这种 CAP 的单体模型不能描述 CAP-二聚体与 DNA 之间的真实相互作用,因为 CAP 在与 DNA 结合之前形成二聚体。因此,在这里,我们研究了具有 cAMP 或 cGMP 配体的 CAP-二聚体+DNA 复合物的稳定结构及其电子态,以阐明配体结合对 CAP-二聚体与 DNA 之间相互作用的影响。MD 模拟阐明了 CAP-二聚体的 DNA 结合域根据结合到 CAP-二聚体的配体而表现出不同的行为。此外,FMO 计算表明,对于 CAP-二聚体+DNA+ cAMP 复合物,CAP-二聚体与 DNA 之间的结合能大于 CAP-二聚体+DNA+ cGMP 复合物,与实验结果一致。还强调了 CAP-二聚体的 Arg185 和 Lys188 残基对于 CAP-二聚体与 DNA 之间的结合很重要。这些结果为提出有效控制转录机制的新化合物提供了有用的信息。