Liu Yucui, Huang Yanxin, Fan Cong, Chi Zhongmei, Bai Miao, Sun Luguo, Yang Li, Yu Chunlei, Song Zhenbo, Yang Xiaoguang, Yi Jingwen, Wang Shuyue, Liu Lei, Wang Guannan, Zheng Lihua
National Engineering Laboratory for Druggable Gene and Protein Screening, Northeast Normal University, Changchun, China.
State Key Laboratory of Microbial Technology, Shandong University, Qingdao, China.
Front Microbiol. 2021 Sep 27;12:743305. doi: 10.3389/fmicb.2021.743305. eCollection 2021.
, the prime pathogen of dental caries, can secrete glucosyltransferases (GTFs) to synthesize extracellular polysaccharides (EPSs), which are the virulence determinants of cariogenic biofilms. Ursolic acid, a type of pentacyclic triterpene natural compound, has shown potential antibiofilm effects on . To investigate the mechanisms of ursolic acid-mediated inhibition of biofilm formation, we first demonstrated that ursolic acid could decrease the viability and structural integrity of biofilms, as evidenced by XTT, crystal violet, and live/dead staining assays. Then, we further revealed that ursolic acid could compete with the inherent substrate to occupy the catalytic center of GTFs to inhibit EPS formation, and this was confirmed by GTF activity assays, computer simulations, site-directed mutagenesis, and capillary electrophoresis (CE). In conclusion, ursolic acid can decrease bacterial viability and prevent biofilm formation by binding and inhibiting the activity of GTFs.
变形链球菌是龋齿的主要病原体,可分泌葡糖基转移酶(GTFs)以合成细胞外多糖(EPSs),而EPSs是致龋生物膜的毒力决定因素。熊果酸是一种五环三萜类天然化合物,已显示出对变形链球菌具有潜在的抗生物膜作用。为了研究熊果酸介导的抑制变形链球菌生物膜形成的机制,我们首先证明熊果酸可降低生物膜的活力和结构完整性,XTT、结晶紫和活/死染色试验证明了这一点。然后,我们进一步揭示熊果酸可与固有底物竞争以占据GTFs的催化中心来抑制EPS形成,GTF活性测定、计算机模拟、定点诱变和毛细管电泳(CE)证实了这一点。总之,熊果酸可通过结合并抑制GTFs的活性来降低细菌活力并防止变形链球菌生物膜形成。