Targeting the polyene chain represents an adjuvant strategy for optimizing polyene antifungals
成果类型:
Article
署名作者:
Zhang, Yishan; Liu, Xiaocong; Weng, Luobei; Li, Shuixiu; Chen, Peiran; Zhang, Gehua; Wang, Jianqi; Zhang, Dongmei; Tang, Chuanyan; Hu, Yunfeng; Ye, Wencai; Zhang, Hong
署名单位:
Jinan University; Jinan University; Jinan University; Sun Yat Sen University; Jinan University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2534610123
发表日期:
2026-04-28
页码:
e2534610123
关键词:
polyene antifungals
drug optimization
vitamin D
amphotericin
invasive fungal infection
ION-CHANNEL FORMATION
AMPHOTERICIN-B
sterol
antagonism
ergosterol
binding
cells
yeast
摘要:
Polyene antifungals (PAs) have long constituted an irreplaceable lifesaving treatment for lethal fungal infections. However, PAs induce significant dose- dependent nephrotoxicity, primarily because of their binding to cholesterol in the renal cell membrane, which is structurally similar to their fungicidal target ergosterol in the fungal membrane. Efforts to optimize PAs have focused mainly on their mycosamine group and polyol chain, while the potential of the polyene chain remains underexplored. Here, we report that the polyene chain can function as a molecular switch, enabling hydrophobic coupling with structurally compatible adjuvants repurposed from clinically approved drugs. This acterized by a reorientation of the mycosamine group, and increases the rigidity and length of the polyene chain, which can asymmetrically modulate the binding of PAs to membrane cholesterol and ergosterol, thereby attenuating nephrotoxicity and increasing acterized by its broad safety profile and substantial dual adjuvant activities in multiple animal models and retrospective clinical data. Thus, exploiting the polyene chain as a molecular switch, modulated via specific polyene chain-coupled adjuvants, is a strategy to concurrently attenuate nephrotoxicity and potentiate the effectiveness of PAs.
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