József Sóki

University of Szeged
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Hungary

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Articles (11)

Proteomics-Based RT-qPCR and Functional Analysis of 18 Genes in Metronidazole Resistance of Bacteroides fragilis

Previously, we reported that metronidazole MICs are not dependent on the expression levels of nim genes in B. fragilis strains and we compared the proteomes of metronidazole-resistant laboratory B. fragilis strains to those of their susceptible parent strains. Here, we used RT-qPCR to correlate the expression levels of 18 candidate genes in a panel of selected, clinical nim gene-positive and -negative B. fragilis strains to their metronidazole MICs. Metronidazole MICs were correlated with the expression of certain tested genes. Specifically, lactate dehydrogenase expression correlated positively, whereas cytochrome fumarate reductase/succinate dehydrogenase, malate dehydrogenase, phosphoglycerate kinase redox and gat (GCN5-like acetyltransferase), and relA (stringent response) regulatory gene expressions correlated negatively with metronidazole MICs. This result provides evidence for the involvement of carbohydrate catabolic enzymes in metronidazole resistance in B. fragilis. This result was supported by direct substrate utilization tests. However, the exact roles of these genes/proteins should be determined in deletion–complementation tests. Moreover, the exact redox cofactor(s) participating in metronidazole activation need to be identified.

Year:

2024

Collaborators (6)

Ingrid Wybo

Vrije Universiteit Brussel

BELGIUM

Katalin Burián

University of Szeged

HUNGARY

David Leitsch

Ass. Prof.

Medical University of Vienna

AUSTRIA

Friederike von Loewenich

Johannes Gutenberg Universität Mainz

GERMANY

Ferenc Somogyvari

associate professor

Szent-Györgyi Albert Medical School, University of Szeged

HUNGARY

Luc Dubreuil

Head departement Microbiology

University

FRANCE
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