Interplay of Klebsiella pneumoniae fabZ and lpxC Mutations Leads to LpxC Inhibitor-Dependent Growth Resulting from Loss of Membrane Homeostasis

Author:

Mostafavi Mina1,Wang Lisha1,Xie Lili1,Takeoka Kenneth T.1,Richie Daryl L.1,Casey Fergal1,Ruzin Alexey1,Sawyer William S.1,Rath Christopher M.1,Wei Jun-Rong1,Dean Charles R.1ORCID

Affiliation:

1. Infectious Diseases, Novartis Institutes for BioMedical Research, Emeryville, California, USA

Abstract

Emergence of antibiotic resistance has prompted efforts to identify and optimize novel inhibitors of antibacterial targets such as LpxC. This enzyme catalyzes the first committed step of lipid A synthesis, which is necessary to generate lipopolysaccharide and ultimately the Gram-negative protective outer membrane. Investigation of this pathway and its interrelationship with inner membrane (phospholipid) biosynthesis or other pathways is therefore highly important to the fundamental understanding of Gram-negative bacteria and by extension to antibiotic discovery. Here we exploited the availability of a novel LpxC inhibitor to engender the generation of K. pneumoniae resistant mutants whose growth depends on chemical inhibition of LpxC. Inhibitor dependency resulted from the interaction of different resistance mutations and was based on loss of normal cellular mechanisms required to establish membrane homeostasis. This study provides new insights into the importance of this process in K. pneumoniae and how it may be linked to novel biosynthetic pathway inhibitors.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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