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Cryo-EM analysis of Pseudomonas phage Pa193 structural components.
Iglesias, Stephano M; Hou, Chun-Feng David; Reid, Johnny; Schauer, Evan; Geier, Renae; Soriaga, Angela; Sim, Lucy; Gao, Lucy; Whitelegge, Julian; Kyme, Pierre; Birx, Deborah; Lemire, Sebastien; Cingolani, Gino.
Affiliation
  • Iglesias SM; Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, USA.
  • Hou CD; Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, USA.
  • Reid J; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Schauer E; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Geier R; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Soriaga A; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Sim L; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Gao L; Pasarow Mass Spectrometry Laboratory, Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, Los Angeles, USA.
  • Whitelegge J; Pasarow Mass Spectrometry Laboratory, Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, Los Angeles, USA.
  • Kyme P; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Birx D; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Lemire S; Armata Pharmaceuticals Inc., Los Angeles, USA.
  • Cingolani G; Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, USA. gcingola@uab.edu.
Commun Biol ; 7(1): 1275, 2024 Oct 06.
Article in En | MEDLINE | ID: mdl-39370451
ABSTRACT
The World Health Organization has designated Pseudomonas aeruginosa as a critical pathogen for the development of new antimicrobials. Bacterial viruses, or bacteriophages, have been used in various clinical settings, commonly called phage therapy, to address this growing public health crisis. Here, we describe a high-resolution structural atlas of a therapeutic, contractile-tailed Pseudomonas phage, Pa193. We used bioinformatics, proteomics, and cryogenic electron microscopy single particle analysis to identify, annotate, and build atomic models for 21 distinct structural polypeptide chains forming the icosahedral capsid, neck, contractile tail, and baseplate. We identified a putative scaffolding protein stabilizing the interior of the capsid 5-fold vertex. We also visualized a large portion of Pa193 ~ 500 Å long tail fibers and resolved the interface between the baseplate and tail fibers. The work presented here provides a framework to support a better understanding of phages as biomedicines for phage therapy and inform engineering opportunities.
Subject(s)

Full text: 1 Database: MEDLINE Main subject: Pseudomonas Phages / Cryoelectron Microscopy Language: En Journal: Commun Biol / Commun. biolog / Communications biology Year: 2024 Type: Article Affiliation country: United States

Full text: 1 Database: MEDLINE Main subject: Pseudomonas Phages / Cryoelectron Microscopy Language: En Journal: Commun Biol / Commun. biolog / Communications biology Year: 2024 Type: Article Affiliation country: United States