棘白菌素
背景(考古学)
膜
生物
膜蛋白
生物化学
卡斯波芬金
抗真菌药
膜转运蛋白
抗真菌
鞘脂
真菌蛋白
化学
细胞生物学
微生物学
两性霉素B
酿酒酵母
基因
古生物学
氟康唑
作者
Jennifer Jiang,Mikhail V. Keniya,Anusha Puri,Xueying Zhan,Jeff Cheng,Huan Wang,Gigi Lin,Yun-Kyung Lee,Nora Jaber,Caifeng Zhao,Chang Pang,Yasmine Hassoun,Haiyan Zheng,Erika Shor,Zheng Shi,Sang-Hyuk Lee,Min Xu,David S. Perlin,Wei Dai
标识
DOI:10.1038/s41467-025-64171-x
摘要
Abstract Fungal plasma membrane proteins represent key therapeutic targets for antifungal agents, yet their native structure and spatial distribution remain poorly characterized. Herein, we employ an integrative approach to investigate the organization of plasma membrane protein complexes in Candida glabrata , focusing on two abundant and essential membrane proteins, the β-(1,3)-glucan synthase (GS) and the proton pump Pma1. We show that treatment with caspofungin, an echinocandin antifungal that targets GS, disrupts the native distribution of membrane protein complexes and alters membrane biophysical properties. Perturbation of the sphingolipid biosynthesis further modulates drug susceptibility, revealing that the lipid environment plays an integral role in membrane protein organization and GS-echinocandin interactions. Our work highlights the importance of characterizing membrane proteins in their native context to understand their functions and inform the development of novel antifungal therapies.
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