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Nature Communications|October 23, 2021
A small molecule produced by Lactobacillus species blocks Candida albicans filamentation by inhibiting a DYRK1-family kinaseJessie MacAlpine, Martin Daniel-Ivad, Zhongle Liu, et al.
Nature Communications|July 1, 2025
Colistin enhances caspofungin antifungal efficacy against Aspergillus fumigatus by modulating calcium homeostasis and stress responsesLaura Cristina García Carnero, Xingyue Li, Patrícia Alves de Castro, et al.
Nature Communications|January 26, 2019
Structural basis for species-selective targeting of Hsp90 in a pathogenic fungusLuke Whitesell, Nicole Robbins, David S Huang, et al.
Nature Communications|September 13, 2017
The Candida albicans transcription factor Cas5 couples stress responses, drug resistance and cell cycle regulationJinglin L Xie, Longguang Qin, Zhengqiang Miao, et al.
Biorxiv : the Preprint Server for Biology|January 20, 2025
Butyrolactol A is a phospholipid flippase inhibitor that potentiates the bioactivity of caspofungin against resistant fungiXuefei Chen, H Diessel Duan, Michael J Hoy, et al.
Nature Communications|November 12, 2021
Leveraging machine learning essentiality predictions and chemogenomic interactions to identify antifungal targetsCi Fu, Xiang Zhang, Amanda O Veri, et al.
Nature Communications|December 23, 2020
An oxindole efflux inhibitor potentiates azoles and impairs virulence in the fungal pathogen Candida aurisKali R Iyer, Kaddy Camara, Martin Daniel-Ivad, et al.
Nature Communications|June 25, 2022
Targeting fungal membrane homeostasis with imidazopyrazoindoles impairs azole resistance and biofilm formationNicole M Revie, Kali R Iyer, Michelle E Maxson, et al.
Cell Chemical Biology|June 27, 2023
Identification of triazenyl indoles as inhibitors of fungal fatty acid biosynthesis with broad-spectrum activityKali R Iyer, Sheena C Li, Nicole M Revie, et al.
Cell|January 1, 2026
Butyrolactol A enhances caspofungin efficacy via flippase inhibition in drug-resistant fungiXuefei Chen, H Diessel Duan, Michael J Hoy, et al.
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