Fang Dong, Zhang Zhiyang, Zhai Jihang, Guo Baolin, Li Pengfei, Liu Xiaoyuan, Song Jinshuai, Xie Songqiang, Wu Ruibo, Zhao Yuan, Wang Chaojie
The Key Laboratory of Natural Medicine and Immuno-Engineering, Henan University Kaifeng 475000 P. R. China
School of Pharmacy, Henan University Kaifeng 475000 P. R. China.
Chem Sci. 2023 Dec 29;15(8):2867-2882. doi: 10.1039/d3sc06037c. eCollection 2024 Feb 22.
The regulation of enzymes and development of polyamine analogs capable of controlling the dynamics of endogenous polyamines to achieve anti-tumor effects is one of the biggest challenges in polyamine research. However, the root of the problem remains unsolved. This study represents a significant milestone as it unveils, for the first time, the comprehensive catalytic map of acetylpolyamine oxidase that includes chemical transformation and product release kinetics, by utilizing multiscale simulations with over six million dynamical snapshots. The transportation of acetylspermine is strongly exothermic, and high binding affinity of enzyme and reactant is observed. The transfer of hydride from polyamine to FAD is the rate-limiting step, an H-shift coupled electron transfer mechanism. The two products are released in a detour stepwise mechanism, which also impacts the enzymatic efficiency. Inspired by these mechanistic insights into enzymatic catalysis, we propose a novel strategy that regulates the polyamine level and catalytic progress through the action of His64. Directly suppressing APAO by mutating His64 further inhibited growth and migration of tumor cells and tumor tissue and . Therefore, the network connecting microcosmic and macroscopic scales opens up new avenues for designing polyamine compounds and conducting anti-tumor research in the future.
对酶进行调控以及开发能够控制内源性多胺动态以实现抗肿瘤作用的多胺类似物,是多胺研究中最大的挑战之一。然而,问题的根源仍未解决。本研究具有重要的里程碑意义,因为它首次利用包含超过六百万个动力学快照的多尺度模拟,揭示了乙酰多胺氧化酶的全面催化图谱,其中包括化学转化和产物释放动力学。乙酰精胺的转运是强烈放热的,并且观察到酶与反应物具有高结合亲和力。氢化物从多胺转移到FAD是限速步骤,这是一种H迁移偶联电子转移机制。两种产物以迂回的逐步机制释放,这也影响酶的效率。受这些酶催化机制见解的启发,我们提出了一种通过His64的作用来调节多胺水平和催化进程的新策略。通过突变His64直接抑制APAO进一步抑制了肿瘤细胞和肿瘤组织的生长与迁移。因此,连接微观和宏观尺度的网络为未来设计多胺化合物和开展抗肿瘤研究开辟了新途径。