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Updated: Aug 29, 2026

Gene Editing of Primary Rhesus Macaque B Cells
Published on: February 10, 2023
Modification of Helicobacter pylori outer membrane protein expression during experimental infection of rhesus
Jay V Solnick1, Lori M Hansen, Nina R Salama
1Departments of Medicine and Medical Microbiology and Immunology, and Center for Comparative Medicine, University of California, Davis, CA 95616.
Abstract:
Clinical isolates of Helicobacter pylori show marked diversity, which may derive from genomic changes that occur during the often lifelong association of the bacterium with its human host. We used the rhesus macaque model, together with DNA microarrays, to examine genomic changes in H. pylori that occur early during experimental infection. Microarray analysis showed that H. pylori recovered from challenged macaques had deleted babA, a member of a large family of paralogous outer membrane proteins (OMPs) that mediates attachment of H. pylori to the Lewis B blood group antigen on gastric epithelium. In some cases the babA gene was replaced by babB, an uncharacterized OMP that is closely related to babA. In other cases the babA gene was present but was not expressed because of alteration in dinucleotide CT repeats in the 5' coding region. In either case, strains lacking babA did not adhere to Lewis B, which is expressed on macaque gastric epithelium. Absence of babA and duplication of babB was also seen in H. pylori isolates derived from human clinical samples, suggesting that this gene conversion event is not unique to experimentally infected rhesus monkeys. These results demonstrate in real time with a relevant animal model that H. pylori regulates OMP expression in vivo by using both antigenic variation and phase variation. We suggest that changes in babA and babB after experimental infection of macaques represent a dynamic response in the H. pylori outer membrane that facilitates adherence to the gastric epithelium and promotes chronic infection.
Insights
Helicobacter pylori alters its outer membrane proteins, such as babA, during infection. This genomic variation helps the bacteria adhere to the stomach lining, promoting chronic infections in both macaques and humans.
Area of Science:
- Microbiology
- Genomics
- Infectious Diseases
Background:
- Helicobacter pylori exhibits significant genetic diversity in clinical isolates.
- Genomic changes in H. pylori may occur during chronic infections in the human host.
Purpose of the Study:
- To investigate early genomic changes in H. pylori during experimental infection using a rhesus macaque model.
- To understand the role of outer membrane proteins (OMPs) in H. pylori adaptation and infection.
Main Methods:
- Utilized DNA microarrays to analyze genomic alterations in H. pylori recovered from infected macaques.
- Examined changes in the babA and babB genes, which encode OMPs involved in bacterial adhesion.
Main Results:
- H. pylori strains lacking the babA gene were observed, with some cases showing replacement by babB.
- Alterations in CT repeats within the babA gene led to its non-expression (phase variation).
- Strains lacking functional babA showed reduced adherence to Lewis B antigen on gastric epithelium, a mechanism also observed in human isolates.
Conclusions:
- H. pylori regulates OMP expression in vivo through antigenic and phase variation.
- Changes in babA and babB facilitate bacterial adherence and promote chronic H. pylori infections.
- The observed gene conversion events are relevant to both experimental models and human infections.
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