Zhang Laiying, He Jun, Bai Lang, Ruan Shihua, Yang Tao, Luo Youfu
State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, West China Medical School, Sichuan University, Chengdu, Sichuan, China.
Center of Infectious Diseases, State Key Laboratory of Biotherapy, West China Hospital, West China Medical School, Sichuan University and Collaborative Innovation Center, Chengdu, Sichuan, China.
Med Res Rev. 2021 Jul;41(4):1855-1889. doi: 10.1002/med.21780. Epub 2021 Jan 27.
Ribosomes, which synthesize proteins, are critical organelles for the survival and growth of bacteria. About 60% of approved antibiotics discovered so far combat pathogenic bacteria by targeting ribosomes. However, several issues, such as drug resistance and toxicity, have impeded the clinical use of ribosome-targeting antibiotics. Moreover, the complexity of the bacteria ribosome structure has retarded the discovery of new ribosome-targeting agents that are considered as the key to the drug-resistance and toxicity. To deal with these challenges, efforts such as medicinal chemistry optimization, combination treatment, and new drug delivery system have been developed. But not enough, the development of structural biology and new screening methods bring powerful tools, such as cryo-electron microscopy technology, advanced computer-aided drug design, and cell-free in vitro transcription/translation systems, for the discovery of novel ribosome-targeting antibiotics. Thus, in this paper, we overview the research on different aspects of bacterial ribosomes, especially focus on discussing the challenges in the discovery of ribosome-targeting antibacterial drugs and advances made to address issues such as drug-resistance and selectivity, which, we believe, provide perspectives for the discovery of novel antibiotics.
核糖体负责合成蛋白质,是细菌生存和生长所必需的细胞器。迄今为止,约60%已获批的抗生素通过作用于核糖体来对抗病原菌。然而,耐药性和毒性等问题阻碍了靶向核糖体抗生素的临床应用。此外,细菌核糖体结构的复杂性延缓了新型靶向核糖体药物的发现,而这类药物被视为解决耐药性和毒性问题的关键。为应对这些挑战,人们开展了药物化学优化、联合治疗以及新型药物递送系统等方面的研究。不仅如此,结构生物学和新型筛选方法的发展带来了强大工具,如冷冻电子显微镜技术、先进的计算机辅助药物设计以及无细胞体外转录/翻译系统,助力新型靶向核糖体抗生素的发现。因此,在本文中,我们综述了细菌核糖体不同方面的研究,尤其着重探讨了靶向核糖体抗菌药物发现过程中的挑战以及为解决耐药性和选择性等问题所取得的进展,我们认为这些内容为新型抗生素的发现提供了思路。