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Microbiology

D-Index
61
Citations
16711
World Ranking
2964
National Ranking
1181

Overview

John W. Foster is affiliated with the University of South Alabama in the United States. Their research spans the fields of Biochemistry, Genetics, and Molecular Biology, with a notable focus on Endocrinology and Molecular Biology as subfields. Additional areas of study include Epidemiology and Immunology.

The scientist's work targets several main topics, including:

  • Escherichia coli research studies
  • Urinary Tract Infections Management
  • Enterobacteriaceae and Cronobacter Research
  • RNA modifications and cancer
  • RNA and protein synthesis mechanisms
  • Interferon and immune responses

Their publication record includes papers in specialized journals, contributing to the domains of microbiology and molecular biology. Two recent papers illustrate their research interests:

  • "Regulation of Escherichia coli fim gene transcription by GadE and other acid tolerance gene products," published in 2022 in Microbiology
  • Salmonella Outer Membrane Vesicles contain tRNA Fragments (tRFs) that Inhibit Bacteriophage P22 infection, published in 2021 in bioRxiv (Cold Spring Harbor Laboratory)

Frequent collaborators in their research include:

  • William R. Schwan
  • Joshua Luedtke
  • Kathleen Engelbrecht
  • Jeremy Mollinger
  • Andrew Wheaton

Their publications are often featured in venues such as Microbiology and bioRxiv (Cold Spring Harbor Laboratory).

Best Publications

  • Escherichia coli acid resistance: tales of an amateur acidophile

    John W. Foster

  • Control of acid resistance in Escherichia coli.

    Marie-Pierre Castanie-Cornet;Thomas A. Penfound;Dean Smith;John F. Elliott

  • Mechanisms of acid resistance in enterohemorrhagic Escherichia coli.

    J. Lin;M. P. Smith;K. C. Chapin;Hyung Suk Baik

  • Acid stress responses in enterobacteria

    Shawn Bearson;Bradley Bearson;John W Foster

  • Adaptive acidification tolerance response of Salmonella typhimurium.

    Johnw . Foster;Holly K. Hall

  • Comparative analysis of extreme acid survival in Salmonella typhimurium, Shigella flexneri, and Escherichia coli

    Jyhshiun Lin;In Soo Lee;J. Frey;J. L. Slonczewski

  • DksA: a critical component of the transcription initiation machinery that potentiates the regulation of rRNA promoters by ppGpp and the initiating NTP.

    Brian J. Paul;Melanie M. Barker;Wilma Ross;David A. Schneider

  • HOW SALMONELLA SURVIVE AGAINST THE ODDS

    John W. Foster;Michael P. Spector

  • Escherichia coli Glutamate- and Arginine-Dependent Acid Resistance Systems Increase Internal pH and Reverse Transmembrane Potential

    Hope Richard;John W. Foster

  • Salmonella acid shock proteins are required for the adaptive acid tolerance response.

    J W Foster

  • Inducible pH homeostasis and the acid tolerance response of Salmonella typhimurium.

    J W Foster;H K Hall

  • The stationary-phase sigma factor sigma S (RpoS) is required for a sustained acid tolerance response in virulent Salmonella typhimurium.

    In Soo Lee;Jyhshiun Lin;Holly K. Hall;Bradley Bearson

  • A Low pH-Inducible, PhoPQ-Dependent Acid Tolerance Response Protects Salmonella typhimurium against Inorganic Acid Stress

    Bradley L. Bearson;Lee Wilson;John W. Foster

  • Breaking through the acid barrier: an orchestrated response to proton stress by enteric bacteria.

    Jonathon P. Audia;Cathy C. Webb;John W. Foster

  • Nicotinamide adenine dinucleotide biosynthesis and pyridine nucleotide cycle metabolism in microbial systems.

    J W Foster;A G Moat

  • Virulent Salmonella typhimurium has two periplasmic Cu, Zn-superoxide dismutases

    Ferric C. Fang;Mary Ann Degroote;John W. Foster;Andreas J. Bäumler

  • Low pH adaptation and the acid tolerance response of Salmonella typhimurium.

    John W. Foster

  • The role of fur in the acid tolerance response of Salmonella typhimurium is physiologically and genetically separable from its role in iron acquisition.

    H K Hall;J W Foster

  • A low-pH-inducible, stationary-phase acid tolerance response in Salmonella typhimurium.

    In Soo Lee;J. L. Slonczewski;J. W. Foster

  • Internal pH crisis, lysine decarboxylase and the acid tolerance response of Salmonella typhimurium

    Yong-Keun Park;Bradley Bearson;Seong Ho Bang;Iel Soo Bang

Frequent Co-Authors

Kevin L. Karem
Kevin L. Karem Centers for Disease Control and Prevention
Asim K. Bej
Asim K. Bej University of Alabama at Birmingham
Tyrrell Conway
Tyrrell Conway Oklahoma State University
B. Brett Finlay
B. Brett Finlay University of British Columbia
Joseph T. Wade
Joseph T. Wade New York State Department of Health
William H. Benjamin
William H. Benjamin University of Alabama at Birmingham
James B. Kaper
James B. Kaper University of Maryland, Baltimore
Roy Curtiss
Roy Curtiss University of Florida
Hanne Ingmer
Hanne Ingmer University of Copenhagen
James E. Galagan
James E. Galagan Boston University

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