Vitamin B6 is required for full motility and virulence in Helicobacter pylori
Alexandra Grubman1, Alexandra Phillips, Marie Thibonnier
1Department of Microbiology, Monash University, Melbourne, Australia.
Abstract:
Despite recent advances in our understanding of how Helicobacter pylori causes disease, the factors that allow this pathogen to persist in the stomach have not yet been fully characterized. To identify new virulence factors in H. pylori, we generated low-infectivity variants of a mouse-colonizing H. pylori strain using the classical technique of in vitro attenuation. The resulting variants and their highly infectious progenitor bacteria were then analyzed by global gene expression profiling. The gene expression levels of five open reading frames (ORFs) were significantly reduced in low-infectivity variants, with the most significant changes observed for ORFs HP1583 and HP1582. These ORFs were annotated as encoding homologs of the Escherichia coli vitamin B(6) biosynthesis enzymes PdxA and PdxJ. Functional complementation studies with E. coli confirmed H. pylori PdxA and PdxJ to be bona fide homologs of vitamin B(6) biosynthesis enzymes. Importantly, H. pylori PdxA was required for optimal growth in vitro and was shown to be essential for chronic colonization in mice. In addition to having a well-known metabolic role, vitamin B(6) is necessary for the synthesis of glycosylated flagella and for flagellum-based motility in H. pylori. Thus, for the first time, we identify vitamin B(6) biosynthesis enzymes as novel virulence factors in bacteria. Interestingly, pdxA and pdxJ orthologs are present in a number of human pathogens, but not in mammalian cells. We therefore propose that PdxA/J enzymes may represent ideal candidates for therapeutic targets against bacterial pathogens.
Insights
Vitamin B(6) biosynthesis enzymes, PdxA and PdxJ, are crucial for Helicobacter pylori colonization and flagellar motility. These enzymes represent potential therapeutic targets against bacterial pathogens.
Area of Science:
- Microbiology
- Pathogen Biology
- Biochemistry
Background:
- Helicobacter pylori persistence factors remain incompletely understood.
- Identifying novel virulence factors is critical for understanding H. pylori pathogenesis.
Purpose of the Study:
- To identify novel virulence factors in H. pylori.
- To investigate the role of vitamin B(6) biosynthesis in H. pylori infection.
Main Methods:
- Generation of low-infectivity H. pylori variants via in vitro attenuation.
- Global gene expression profiling of variants and progenitor strains.
- Functional complementation studies in Escherichia coli and in vivo colonization assays in mice.
Main Results:
- Reduced expression of HP1583 (PdxA) and HP1582 (PdxJ) in low-infectivity variants.
- H. pylori PdxA and PdxJ confirmed as vitamin B(6) biosynthesis enzyme homologs.
- H. pylori PdxA essential for in vitro growth and in vivo colonization; vitamin B(6) required for flagellar motility.
Conclusions:
- Vitamin B(6) biosynthesis enzymes (PdxA/J) are novel bacterial virulence factors.
- PdxA/J enzymes are essential for H. pylori colonization and flagellar function.
- PdxA/J enzymes are potential therapeutic targets for bacterial infections.
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