Baicalein Acts against Candida albicans by Targeting Eno1 and Inhibiting Glycolysis

被引:24
作者
Li, Liping [1 ]
Lu, Hui [1 ]
Zhang, Xuan [3 ]
Whiteway, Malcolm [4 ]
Wu, Hao [1 ]
Tan, Shanlun [2 ]
Zang, Jianye [3 ]
Tian, Shujuan [2 ]
Zhen, Cheng [1 ]
Meng, Xianlei [3 ]
Li, Wanqian [1 ]
Zhang, Dazhi [1 ,2 ]
Zhang, Min [3 ]
Jiang, Yuanying [1 ]
机构
[1] Tongji Univ, Shanghai Peoples Hosp 10, Sch Med, Dept Pharm, Shanghai, Peoples R China
[2] Naval Med Univ, Sch Pharm, Dept Organ Chem, Shanghai, Peoples R China
[3] Univ Sci & Technol China, Hefei Natl Lab Phys Sci Microscale, Sch Life Sci, Affiliated Hosp 1,Cter Excellence Biomacromol, Hefei, Anhui, Peoples R China
[4] Concordia Univ, Dept Biol, Montreal, PQ, Canada
基金
中国国家自然科学基金;
关键词
baicalein; Eno1; Candida albicans; PLASMINOGEN-BINDING-PROTEIN; ALPHA-ENOLASE; GROWTH; IDENTIFICATION; GENE; SURFACE;
D O I
10.1128/spectrum.02085-22
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Baicalein (BE) is a promising antifungal small-molecule compound with an extended antifungal spectrum, good synergy with fluconazole, and low toxicity, but its target protein and antifungal mechanism remain elusive. In this study, we found that BE can function against Candida albicans by disrupting glycolysis through targeting Eno1 and inhibiting its function. Eno1 acts as a key therapeutic target of the drug, as BE had no antifungal activity against the eno1 null mutant in a Galleria mellonella model of C. albicans infection. To investigate the mechanism of action, we solved the crystal structure of C. albicans Eno1(CaEno1) and then compared the difference between this structure and that of Eno1 from humans. The predicted primary binding site of BE on CaEno1 is between amino acids D261 and W274, with D263, S269, and K273 playing critical roles in the interaction with BE. Both positions S269 and K273 have different residues in the human Eno1 (hEno1). This finding suggests that BE may bind selectively to CaEno1, which would limit the potential for side effects in humans. Our findings demonstrate that Eno1 is a target protein of BE and thus may serve as a novel target for the development of antifungal therapeutics acting through the inhibition of glycolysis. IMPORTANCE Baicalein (BE) is a promising antifungal agent which has been well characterized, but its target protein is still undiscovered. The protein Eno1 plays a crucial role in the survival of Candida albicans. However, there are few antifungal agents which inhibit the functions of Eno1. Here, we found that BE can function against Candida albicans by disrupting glycolysis through targeting Eno1 and inhibiting its function. We further solved the crystal structure of C. albicans Eno1(CaEno1) and predicted that the primary binding site of BE on CaEno1 is between amino acids D261 and W274, with D263, S269, and K273 playing critical roles in the interaction with BE. Our findings will be helpful to get specific small-molecule inhibitors of CaEno1 and open the way for the development of new antifungal therapeutics targeted at inhibiting glycolysis.
引用
收藏
页数:16
相关论文
共 63 条
[1]   PHENIX:: building new software for automated crystallographic structure determination [J].
Adams, PD ;
Grosse-Kunstleve, RW ;
Hung, LW ;
Ioerger, TR ;
McCoy, AJ ;
Moriarty, NW ;
Read, RJ ;
Sacchettini, JC ;
Sauter, NK ;
Terwilliger, TC .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2002, 58 :1948-1954
[2]   Insights into the Giardia intestinalis enolase and human plasminogen interaction [J].
Aguayo-Ortiz, R. ;
Meza-Cervantez, P. ;
Castillo, R. ;
Hernandez-Campos, A. ;
Dominguez, L. ;
Yepez-Mulia, L. .
MOLECULAR BIOSYSTEMS, 2017, 13 (10) :2015-2023
[3]   NADPH oxidases and ROS signaling in the gastrointestinal tract [J].
Aviello, Gabriella ;
Knaus, Ulla G. .
MUCOSAL IMMUNOLOGY, 2018, 11 (04) :1011-1023
[4]   Identification and characterization of ⁢Taenia solium⁢ enolase as a plasminogen-binding protein [J].
Ayon-Nunez, Dolores A. ;
Fragoso, Gladis ;
Espitia, Clara ;
Garcia-Varela, Martin ;
Soberon, Xavier ;
Rosas, Gabriela ;
Laclette, Juan P. ;
Robes, Raul J. .
ACTA TROPICA, 2018, 182 :69-79
[5]   Identification of a novel plasmin(ogen)-binding motif in surface displayed α-enolase of Streptococcus pneumoniae [J].
Bergmann, S ;
Wild, D ;
Diekmann, O ;
Frank, R ;
Bracht, D ;
Chhatwal, GS ;
Hammerschmidt, S .
MOLECULAR MICROBIOLOGY, 2003, 49 (02) :411-423
[6]   Antifungals [J].
Campoy, Sonia ;
Adrio, Jose L. .
BIOCHEMICAL PHARMACOLOGY, 2017, 133 :86-96
[7]   In vitro activity of baicalein against Candida albicans biofilms [J].
Cao, YingYing ;
Dai, BaoDi ;
Wang, Yan ;
Huang, Shan ;
Xu, YongGang ;
Cao, YongBing ;
Gao, PingHui ;
Zhu, ZhenYu ;
Jiang, YuanYing .
INTERNATIONAL JOURNAL OF ANTIMICROBIAL AGENTS, 2008, 32 (01) :73-77
[8]   Targeting the Warburg effect in cancer cells through ENO1 knockdown rescues oxidative phosphorylation and induces growth arrest [J].
Capello, Michela ;
Ferri-Borgogno, Sammy ;
Riganti, Chiara ;
Chattaragada, Michelle Samuel ;
Principe, Moitza ;
Roux, Cecilia ;
Zhou, Weidong ;
Petricoin, Emanuel F. ;
Cappello, Paola ;
Novelli, Francesco .
ONCOTARGET, 2016, 7 (05) :5598-5612
[9]   Antifungal activity and mechanism of action of Ou-gon (Scutellaria root extract) components against pathogenic fungi [J].
Da, Xia ;
Nishiyama, Yayoi ;
Tie, Duerna ;
Hein, Kyaw Zaw ;
Yamamoto, Osamu ;
Morita, Eishin .
SCIENTIFIC REPORTS, 2019, 9 (1)
[10]   Baicalein Induces Programmed Cell Death in Candida albicans [J].
Dai, Bao-Di ;
Cao, Ying-Ying ;
Huang, Shan ;
Xu, Yong-Gang ;
Gao, Ping-Hui ;
Wang, Yan ;
Jiang, Yuan-Ying .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2009, 19 (08) :803-809