Authors
Zhen Wang, Shuting Yang, Binyu Zhang, Hengyi Jiang, Yinxia Li, Rongchao Gao, Yulong Wang, Fengying Fan, Lili Dong, Jiaxuan Qiu, Xiurui Li, Yue Zhou, Alastair I H Murchie, Xuekui Yu
Published in
Science advances. Volume 12. Issue 35. Pages eaef7706. Aug 28, 2026. Epub Aug 28, 2026.
Abstract
In Candida albicans-a World Health Organization fungal priority pathogen-overexpression of the adenosine triphosphate (ATP)-binding cassette transporter Cdr1 drives multidrug resistance. We present seven cryo-electron microscopy structures capturing substrate entry and expulsion. An inward-facing transmembrane channel with three on-off substrate binding sites defines a proposed entry pathway for a single substrate molecule. Coordinated ATP binding to both nucleotide-binding domains induces transmembrane domain closure, driving the substrate expulsion; adenosine diphosphate release following ATP hydrolysis resets the transporter to an inward-open conformation, enabling substrate entry for the next translocation cycle. Structures with three structurally diverse inhibitors resolve two distinct binding modes: one occupying all three substrate sites and another specifically binding two extracellular-proximal sites. These findings provide snapshots of the substrate translocation cycle and structural blueprints for antifungal drug design.
PMID:
42664345
Bibliographic data and abstract were imported from PubMed on 29 Aug 2026.
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