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Metallomics : Integrated Biometal Science|October 27, 2015
Iron and zinc exploitation during bacterial pathogenesisLi Ma, Austen Terwilliger, Anthony W MaressoInfection and Immunity|May 13, 2020
Progress towards the Development of a NEAT Vaccine for Anthrax II: Immunogen Specificity and Alum Effectiveness in an Inhalational ModelJoseph Jelinski, Austen Terwilliger, Sabrina Green, et al.PHAGE (New Rochelle, N.Y.)|September 26, 2022
Discovery of the First Lytic Staphylococcus pseudintermedius/Staphylococcus aureus Polyvalent BacteriophagesHaroldo Hernandez Santos, Justin Clark, Austen Terwilliger, et al.Journal of Bacteriology|September 27, 2021
Loss of Dihydroxyacid Dehydratase Induces Auxotrophy in Bacillus anthracisJoseph Jelinski, Madeline Cortez, Austen Terwilliger, et al.Molecular Microbiology|May 8, 2019
Heme catabolism in the causative agent of anthraxJustin Clark, Austen Terwilliger, Chinh Nguyen, et al.Infection and Immunity|July 5, 2023
Class-Driven Synergy and Antagonism between a Pseudomonas Phage and AntibioticsPaul Nicholls, Justin R Clark, Carmen Gu Liu, et al.Viruses|October 26, 2021
Phage Therapy Related Microbial Succession Associated with Successful Clinical Outcome for a Recurrent Urinary Tract InfectionAusten Terwilliger, Justin Clark, Maile Karris, et al.Cell Calcium|May 31, 2011
TRPML: transporters of metals in lysosomes essential for cell survival?Kirill Kiselyov, Grace A Colletti, Austen Terwilliger, et al.Journal of Bacteriology|May 13, 2015
Bacillus anthracis Overcomes an Amino Acid Auxotrophy by Cleaving Host Serum ProteinsAusten Terwilliger, Michelle C Swick, Kathryn J Pflughoeft, et al.Infection and Immunity|September 21, 2016
Progress toward the Development of a NEAT Protein Vaccine for Anthrax DiseaseMiriam A Balderas, Chinh T Q Nguyen, Austen Terwilliger, et al.Pageof 2