Department of Chemistry, Hyogo College of Medicine.
Chem Pharm Bull (Tokyo). 2021;69(8):734-740. doi: 10.1248/cpb.c21-00148.
Peptide bond formation in living cells occurs at the peptidyl transferase center (PTC) of the large ribosomal subunit and involves the transfer of the peptidyl group from peptidyl-tRNA to aminoacyl-tRNA. Despite numerous kinetic and theoretical studies, many details of this reaction -such as whether it proceeds via a stepwise or concerted mechanism- remain unclear. In this study, we calculated the geometry and energy of the transition states and intermediates in peptide bond formation in the PTC environment using the ONIOM (our own n-layered integrated molecular orbital and molecular mechanics) method. The calculations indicated that the energy of the transition states of stepwise mechanisms are lower than those of concerted mechanisms and suggested that the reaction involves a neutral tetrahedral intermediate that is stabilized through the hydrogen-bonding network in the PTC environment. The results will lead to a better understanding of the mechanism of peptidyl transfer reaction, and resolve fundamental questions of the steps and molecular intermediates involved in peptide bond formation in the ribosome.
肽键的形成发生在活细胞的大亚基核糖体肽基转移酶中心(PTC),涉及从肽基-tRNA 向氨酰基-tRNA 的肽基转移。尽管进行了大量的动力学和理论研究,但该反应的许多细节——例如它是通过逐步还是协同机制进行的——仍不清楚。在这项研究中,我们使用 ONIOM(我们自己的 n 层集成分子轨道和分子力学)方法计算了 PTC 环境中肽键形成的过渡态和中间体的几何形状和能量。计算表明,逐步机制的过渡态能量低于协同机制的过渡态能量,表明该反应涉及通过 PTC 环境中的氢键网络稳定的中性四面体型中间体。研究结果将有助于更好地理解肽基转移反应的机制,并解决核糖体中肽键形成涉及的步骤和分子中间体的基本问题。