Sarah Beattie

Affiliations: 
2022 Pediatrics University of Iowa, Iowa City, IA 
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"Sarah Beattie"

Parents

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Robert A. Cramer grad student 2012-2017 Dartmouth (Cell Biology Tree)
Damian Krysan post-doc 2022 University of Iowa
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Publications

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Conway TP, Vu BG, Beattie SR, et al. (2024) Similarities and distinctions in the activation of the Pdr1 regulatory pathway by azole and non-azole drugs. Msphere. 9: e0079224
Conway TP, Vu BG, Beattie SR, et al. (2024) Similarities and distinctions in the activation of the Pdr1 regulatory pathway by azole and non-azole drugs. Biorxiv : the Preprint Server For Biology
Kelty MT, Miron-Ocampo A, Beattie SR. (2024) A series of pyrimidine-based antifungals with anti-mold activity disrupt ER function in . Microbiology Spectrum. 12: e0104524
Vanneste M, Venzke A, Guin S, et al. (2023) The anti-cancer efficacy of a novel phenothiazine derivative is independent of dopamine and serotonin receptor inhibition. Frontiers in Oncology. 13: 1295185
Miron-Ocampo A, Beattie SR, Guin S, et al. (2023) CWHM-974 is a fluphenazine derivative with improved antifungal activity against due to reduced susceptibility to multidrug transporter-mediated resistance mechanisms. Antimicrobial Agents and Chemotherapy. e0056723
Miron-Ocampo A, Beattie SR, Guin S, et al. (2023) CWHM-974 is a fluphenazine derivative with improved antifungal activity against due to reduced susceptibility to multidrug transporter-mediated resistance mechanisms. Biorxiv : the Preprint Server For Biology
Beattie SR, Esan T, Zarnowski R, et al. (2023) Novel Keto-Alkyl-Pyridinium Antifungal Molecules Active in Models of Candida albicans Vascular Catheter Infection and Candida auris Skin Colonization. Antimicrobial Agents and Chemotherapy. e0008123
Beattie SR, Krysan DJ. (2023) A Dual-Readout High-Throughput Screening Assay for Small Molecules Active Against Aspergillus Fumigatus. Methods in Molecular Biology (Clifton, N.J.). 2658: 35-42
Beattie SR, Esan T, Zarnowski R, et al. (2023) Novel keto-alkyl-pyridinium antifungal molecules active in models of in vivo vascular catheter infection and ex vivo skin colonization. Biorxiv : the Preprint Server For Biology
Alden KM, Jezewski AJ, Beattie SR, et al. (2022) Genetic Interaction Analysis Reveals that Cryptococcus neoformans Utilizes Multiple Acetyl-CoA-Generating Pathways during Infection. Mbio. e0127922
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