Header

UZH-Logo

Maintenance Infos

Amoebae-based screening reveals a novel family of compounds restricting intracellular Legionella


Harrison, C F; Chiriano, G; Finsel, I; Manske, C; Hoffmann, C; Steiner, B; Kranjc, A; Patthey-Vuadens, O; Kicka, S; Trofimov, V; Ouertatani-Sakouhi, H; Soldati, T; Scapozza, L; Hilbi, H (2015). Amoebae-based screening reveals a novel family of compounds restricting intracellular Legionella. ACS Infectious Diseases, 1(7):327-338.

Abstract

The causative agent of Legionnaires’ disease, Legionella pneumophila, grows in environmental amoebae and mammalian macrophages within a distinct compartment, the ‘Legionella-containing vacuole’ (LCV). Intracellular bacteria are protected from many antibiotics, and thus are notoriously difficult to eradicate. To identify novel compounds that restrict intracellular bacterial replication, we previously developed an assay based on a coculture of amoebae and GFP-producing L. pneumophila. This assay was used to screen a pathway-based, highly diverse chemical library, referred to as the Sinergia library. In this work, we chose to focus on a group of 11 hit compounds, the majority of which originated from the query molecule CN585, a compound that targets the protein phosphatase calcineurin. Further studies on 78 related compound variants revealed crucial structural attributes, namely a triple-ring scaffold with a central triazine moiety, substituted in positions 3 and 5 by two piperidine or pyrrolidine rings, and in position 1 by an amine group bearing a single aliphatic chain moiety. The most effective compound, ZINC00615682, inhibited intracellular replication of L. pneumophila with an IC50 of approximately 20 nM in Acanthamoeba castellanii and slightly less efficiently in Dictyostelium discoideum or macrophages. Pharmacological and genetic attempts to implicate calcineurin in the intracellular replication of L. pneumophila failed. Taken together, these results show that the amoebae-based screen and structure–activity relationship analysis is suitable for the identification of novel inhibitors of the intracellular replication of L. pneumophila. The most potent compound identified in this study targets (an) as yet unidentified host factor(s).

Abstract

The causative agent of Legionnaires’ disease, Legionella pneumophila, grows in environmental amoebae and mammalian macrophages within a distinct compartment, the ‘Legionella-containing vacuole’ (LCV). Intracellular bacteria are protected from many antibiotics, and thus are notoriously difficult to eradicate. To identify novel compounds that restrict intracellular bacterial replication, we previously developed an assay based on a coculture of amoebae and GFP-producing L. pneumophila. This assay was used to screen a pathway-based, highly diverse chemical library, referred to as the Sinergia library. In this work, we chose to focus on a group of 11 hit compounds, the majority of which originated from the query molecule CN585, a compound that targets the protein phosphatase calcineurin. Further studies on 78 related compound variants revealed crucial structural attributes, namely a triple-ring scaffold with a central triazine moiety, substituted in positions 3 and 5 by two piperidine or pyrrolidine rings, and in position 1 by an amine group bearing a single aliphatic chain moiety. The most effective compound, ZINC00615682, inhibited intracellular replication of L. pneumophila with an IC50 of approximately 20 nM in Acanthamoeba castellanii and slightly less efficiently in Dictyostelium discoideum or macrophages. Pharmacological and genetic attempts to implicate calcineurin in the intracellular replication of L. pneumophila failed. Taken together, these results show that the amoebae-based screen and structure–activity relationship analysis is suitable for the identification of novel inhibitors of the intracellular replication of L. pneumophila. The most potent compound identified in this study targets (an) as yet unidentified host factor(s).

Statistics

Citations

Dimensions.ai Metrics
12 citations in Web of Science®
13 citations in Scopus®
Google Scholar™

Altmetrics

Downloads

80 downloads since deposited on 08 Feb 2016
5 downloads since 12 months
Detailed statistics

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > Institute of Medical Microbiology
Dewey Decimal Classification:570 Life sciences; biology
610 Medicine & health
Scopus Subject Areas:Health Sciences > Infectious Diseases
Language:English
Date:April 2015
Deposited On:08 Feb 2016 11:40
Last Modified:26 Apr 2022 11:14
Publisher:American Chemical Society (ACS)
ISSN:2373-8227
OA Status:Hybrid
Free access at:Official URL. An embargo period may apply.
Publisher DOI:https://doi.org/10.1021/acsinfecdis.5b00002
Project Information:
  • : FunderSNSF
  • : Grant IDCRSI33_130016
  • : Project TitleIdentification and characterization of novel antibacterial compounds using protozoan hosts
  • Content: Published Version
  • Description: http://pubs.acs.org/page/policy/authorchoice_termsofuse.html
  • Publisher License