Affiliation:
1. Laboratory of Transcription, Center for DNA Fingerprinting and Diagnostics, Tuljaguda Complex, Nampally, Hyderabad, India
2. Graduate Studies, Manipal University, Manipal, Karnataka, India
Abstract
ABSTRACT
Rho is a hexameric molecular motor that functions as a conserved transcription terminator in the majority of bacterial species and is a potential drug target. Psu is a bacteriophage P4 capsid protein that inhibits
Escherichia coli
Rho by obstructing its ATPase and translocase activities. In this study, we explored the anti-Rho activity of Psu for Rho proteins from different pathogens. Sequence alignment and homology modeling of Rho proteins from pathogenic bacteria revealed the conserved nature of the Psu-interacting regions in all these proteins. We chose Rho proteins from various pathogens, including
Mycobacterium smegmatis
,
Mycobacterium bovis
,
Mycobacterium tuberculosis
,
Xanthomonas campestris
,
Xanthomonas oryzae
,
Corynebacterium glutamicum
,
Vibrio cholerae
,
Salmonella enterica
, and
Pseudomonas syringae
. The purified recombinant Rho proteins of these organisms showed variable rates of ATP hydrolysis on poly(rC) as the substrate and were capable of releasing RNA from the
E. coli
transcription elongation complexes. Psu was capable of inhibiting these two functions of all these Rho proteins.
In vivo
pulldown assays revealed direct binding of Psu with many of these Rho proteins.
In vivo
expression of
psu
induced killing of
M. smegmatis
,
M. bovis
,
X. campestris
, and
E. coli
expressing
S. enterica
Rho indicating Psu-induced inhibition of Rho proteins of these strains under physiological conditions. We propose that the “universal” inhibitory function of the Psu protein against the Rho proteins from both Gram-negative and Gram-positive bacteria could be useful for designing peptides with antimicrobial functions and that these peptides could contribute to synergistic antibiotic treatment of the pathogens by compromising the Rho functions.
IMPORTANCE
Bacteriophage-derived protein factors modulating different bacterial processes could be converted into unique antimicrobial agents. Bacteriophage P4 capsid protein Psu is an inhibitor of the
E. coli
transcription terminator Rho. Here we show that apart from antagonizing
E. coli
Rho, Psu is able to inhibit Rho proteins from various phylogenetically unrelated Gram-negative and Gram-positive pathogens. Upon binding to these Rho proteins, Psu inhibited them by affecting their ATPase and RNA release functions. The expression of Psu
in vivo
kills various pathogens, such as
Mycobacterium
and
Xanthomonas
species. Hence, Psu could be useful for identifying peptide sequences with anti-Rho activities and might constitute part of synergistic antibiotic treatment against pathogens.
Funder
SERB, Department of Science and Technology, Government of India
University Grant commission Fellowship
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
17 articles.
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