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Structure-function analysis for development of peptide inhibitors for a Gram positive quorum sensing system

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posted on 2022-07-15, 14:37 authored by Iman Tajer Abdullah, Andrew T Ulijasz, Umakhanth Venkatraman Girija, Sien Tam, Peter Andrew, N Luisa Hiller, Russell Wallis, Hasan Yesilkaya
The Streptococcus pneumoniae Rgg144/SHP144 regulator-peptide quorum sensing (QS) system is critical for nutrient utilisation, oxidative stress response, and virulence. Here we characterised this system by assessing the importance of each residue within the active short hydrophobic peptide (SHP) by alanine-scanning mutagenesis and testing the resulting peptides for receptor binding and activation of the receptor. Interestingly, several of the mutations had little effect on binding to Rgg144 but reduced transcriptional activation appreciably. In particular, a proline substitution (P21A) reduced transcriptional activation by 29-fold but bound with 3-fold higher affinity than the wild-type SHP. Consistent with the function of Rgg144, the mutant peptide led to decreased utilisation of mannose and increased susceptibility to superoxide generator paraquat. Pangenome comparison showed full conservation of P21 across SHP144 allelic variants. Crystalization of Rgg144 in the absence of peptide revealed a comparable structure to the DNA bound and free forms of its homologues suggesting similar mechanisms of activation. Together, these analyses identify key interactions in a critical pneumococcal QS system. Further manipulation of the SHP has the potential to facilitate the development of inhibitors that are functional across strains. The approach described here is likely to be effective across QS systems in multiple species.

Funding

National Institute of Allergy and Infectious Diseases, Grant/Award Number: R01 AI135060-01A1 and R01 AI139077-01A1

History

Citation

Abdullah, I. T., Ulijasz, A. T., Girija, U. V., Tam, S., Andrew, P., Hiller, N. L., Wallis, R. & Yesilkaya, H. (2022). Structure-function analysis for the development of peptide inhibitors for a Gram-positive quorum sensing system. Molecular Microbiology, 117, 1464– 1478. https://doi.org/10.1111/mmi.14921

Author affiliation

Department of Respiratory Sciences

Version

  • VoR (Version of Record)

Published in

Molecular Microbiology

Volume

117

Issue

6

Pagination

1464-1478

Publisher

Wiley

issn

0950-382X

eissn

1365-2958

Acceptance date

2022-05-11

Copyright date

2022

Available date

2022-07-15

Spatial coverage

England

Language

eng

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