Zhang Hongjuan, Chen Ying, Zhang Yu, Qiao Luyao, Chi Xiangyin, Han Yanxing, Lin Yuan, Si Shuyi, Jiang Jiandong
State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, China.
Institute of Medicinal Biotechnology, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100050, China.
Acta Pharm Sin B. 2023 May;13(5):2056-2070. doi: 10.1016/j.apsb.2023.01.022. Epub 2023 Feb 4.
Tuberculosis (TB) is one of the deadly diseases caused by (), which presents a significant public health challenge. Treatment of TB relies on the combination of several anti-TB drugs to create shorter and safer regimens. Therefore, new anti-TB agents working by different mechanisms are urgently needed. FtsZ, a tubulin-like protein with GTPase activity, forms a dynamic Z-ring in cell division. Most of FtsZ inhibitors are designed to inhibit GTPase activity. In , the function of Z-ring is modulated by SepF, a FtsZ binding protein. The FtsZ/SepF interaction is essential for FtsZ bundling and localization at the site of division. Here, we established a yeast two-hybrid based screening system to identify inhibitors of FtsZ/SepF interaction in . Using this system, we found compound T0349 showing strong anti- activity but with low toxicity to other bacteria strains and mice. Moreover, we have demonstrated that T0349 binds specifically to SepF to block FtsZ/SepF interaction by GST pull-down, fluorescence polarization (FP), surface plasmon resonance (SPR) and CRISPRi knockdown assays. Furthermore, T0349 can inhibit bacterial cell division by inducing filamentation and abnormal septum. Our data demonstrated that FtsZ/SepF interaction is a promising anti-TB drug target for identifying agents with novel mechanisms.
结核病(TB)是由()引起的致命疾病之一,它构成了重大的公共卫生挑战。结核病的治疗依赖于几种抗结核药物的联合使用,以制定更短且更安全的治疗方案。因此,迫切需要通过不同机制发挥作用的新型抗结核药物。FtsZ是一种具有GTPase活性的微管蛋白样蛋白,在细胞分裂中形成动态的Z环。大多数FtsZ抑制剂旨在抑制GTPase活性。在()中,Z环的功能由SepF调节,SepF是一种FtsZ结合蛋白。FtsZ/SepF相互作用对于FtsZ的成束和在分裂位点的定位至关重要。在此,我们建立了一种基于酵母双杂交的筛选系统,以鉴定()中FtsZ/SepF相互作用的抑制剂。使用该系统,我们发现化合物T0349具有很强的抗()活性,但对其他细菌菌株和小鼠的毒性较低。此外,我们通过GST下拉、荧光偏振(FP)、表面等离子体共振(SPR)和CRISPRi敲低试验证明,T0349特异性结合SepF以阻断FtsZ/SepF相互作用。此外,T0349可通过诱导丝状化和异常隔膜来抑制细菌细胞分裂。我们的数据表明,FtsZ/SepF相互作用是一个有前景的抗结核药物靶点,可用于鉴定具有新机制的药物。