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Andrew J Jezewski

Showing results (1-10 of 24) with videos related to

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Microbiology Spectrum|January 31, 2023
Carbon Dioxide Potentiates Flucytosine Susceptibility in Cryptococcus neoformansAndrew J Jezewski, Laura C Ristow, Damian J Krysan
Mbio|June 29, 2021
Protein Prenylation and Hsp40 in Thermotolerance of Plasmodium falciparum Malaria ParasitesEmily S Mathews, Andrew J Jezewski, Audrey R Odom John
Msphere|December 11, 2023
Survival in macrophages induces enhanced virulence in <i>Cryptococcus</i>Jacquelyn A Nielson, Andrew J Jezewski, Melanie Wellington, et al.
Microbiology Spectrum|April 12, 2022
Gluconate Kinase Is Required for Gluconate Assimilation and Sporulation in Cryptococcus neoformansAndrew J Jezewski, Sarah R Beattie, Katy M Alden, et al.
Biotechnology and Bioengineering|June 12, 2014
A novel method for simulating insulin mediated GLUT4 translocationAndrew J Jezewski, Joshua J Larson, Beata Wysocki, et al.
Msphere|May 4, 2022
<i>FKS1</i> Is Required for Cryptococcus neoformans Fitness <i>In Vivo</i>: Application of Copper-Regulated Gene Expression to Mouse Models of CryptococcosisSarah R Beattie, Andrew J Jezewski, Laura C Ristow, et al.
Biorxiv : the Preprint Server for Biology|December 15, 2025
<i>Cryptococcus neoformans</i> adapts to host CO<sub>2</sub> concentrations through the coordinated remodeling of central carbon metabolism, oxidative stress resistance, and membrane homeostasisLaura C Ristow, Emma E Blackburn, Andrew J Jezewski, et al.
Plos Biology|May 5, 2026
Cryptococcus neoformans adapts to host CO2 concentrations via metabolic and stress-response remodelingLaura C Ristow, Emma E Blackburn, Andrew J Jezewski, et al.
Mbio|June 29, 2022
Genetic Interaction Analysis Reveals that Cryptococcus neoformans Utilizes Multiple Acetyl-CoA-Generating Pathways during InfectionKaty M Alden, Andrew J Jezewski, Sarah R Beattie, et al.
Nature Communications|October 18, 2023
Cryptococcus neoformans adapts to the host environment through TOR-mediated remodeling of phospholipid asymmetryLaura C Ristow, Andrew J Jezewski, Benjamin J Chadwick, et al.
Pageof 3

Showing results (1-10 of 24) with videos related to

Sort By:
Pageof 3
Microbiology Spectrum|January 31, 2023
Carbon Dioxide Potentiates Flucytosine Susceptibility in Cryptococcus neoformansAndrew J Jezewski, Laura C Ristow, Damian J Krysan
Mbio|June 29, 2021
Protein Prenylation and Hsp40 in Thermotolerance of Plasmodium falciparum Malaria ParasitesEmily S Mathews, Andrew J Jezewski, Audrey R Odom John
Msphere|December 11, 2023
Survival in macrophages induces enhanced virulence in <i>Cryptococcus</i>Jacquelyn A Nielson, Andrew J Jezewski, Melanie Wellington, et al.
Microbiology Spectrum|April 12, 2022
Gluconate Kinase Is Required for Gluconate Assimilation and Sporulation in Cryptococcus neoformansAndrew J Jezewski, Sarah R Beattie, Katy M Alden, et al.
Biotechnology and Bioengineering|June 12, 2014
A novel method for simulating insulin mediated GLUT4 translocationAndrew J Jezewski, Joshua J Larson, Beata Wysocki, et al.
Msphere|May 4, 2022
<i>FKS1</i> Is Required for Cryptococcus neoformans Fitness <i>In Vivo</i>: Application of Copper-Regulated Gene Expression to Mouse Models of CryptococcosisSarah R Beattie, Andrew J Jezewski, Laura C Ristow, et al.
Biorxiv : the Preprint Server for Biology|December 15, 2025
<i>Cryptococcus neoformans</i> adapts to host CO<sub>2</sub> concentrations through the coordinated remodeling of central carbon metabolism, oxidative stress resistance, and membrane homeostasisLaura C Ristow, Emma E Blackburn, Andrew J Jezewski, et al.
Plos Biology|May 5, 2026
Cryptococcus neoformans adapts to host CO2 concentrations via metabolic and stress-response remodelingLaura C Ristow, Emma E Blackburn, Andrew J Jezewski, et al.
Mbio|June 29, 2022
Genetic Interaction Analysis Reveals that Cryptococcus neoformans Utilizes Multiple Acetyl-CoA-Generating Pathways during InfectionKaty M Alden, Andrew J Jezewski, Sarah R Beattie, et al.
Nature Communications|October 18, 2023
Cryptococcus neoformans adapts to the host environment through TOR-mediated remodeling of phospholipid asymmetryLaura C Ristow, Andrew J Jezewski, Benjamin J Chadwick, et al.
Pageof 3