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Updated: Jun 4, 2026

Enrichment of Native and Recombinant Extracellular Vesicles of Mycobacteria
Published on: December 8, 2023
Truncated Rv2820c enhances mycobacterial virulence ex vivo and in vivo
1Department of Microbiology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong Special Administrative Region, China.
Abstract:
Three hypervirulent strains of Mycobacterium tuberculosis isolated from patients suffering from tuberculous meningitis were shown to grow more rapidly inside human macrophages in our previous study. In the current investigation, genomic polymorphisms in these hypervirulent strains were examined using microarray-based comparative genomic hybridization. Among the five genomic polymorphisms identified, two are in-frame deletion (Rv0071/4 and Rv0613c/6c), two are frameshift deletion (Rv1758' and Rv2820c'), and one is gene replacement (Mb3159). The five genomic polymorphisms were transformed into Mycobacterium smegmatis strain mc(2)155 and the survivability of recombinants inside the human monocytic cell line THP-1 was measured. Interestingly, only the recombinant possessing the Rv2820c' survived significantly better than the vector control after 6 h of ex vivo infection (P < 0.001, one-way ANOVA). The Rv2820c' was later transformed into Mycobacterium marinum strain M and the recombinant was used to infect zebrafish. The in vivo infection also showed that the zebrafish infected with the recombinant possessing the Rv2820c' died significantly faster than the vector control (P = 0.006, log-rank test). The 3' truncation in the Rv2820c' was caused by the Beijing/W-defining deletion RD207 and is commonly found in the Beijing/W strains. The current study demonstrated that the truncated Rv2820c of Beijing/W strains could enhance mycobacterial virulence ex vivo and in vivo. This enhancement, however, was not observed for the intact Rv2820c of the non-Beijing/W strains. The presence of the 3' truncated portion of Rv2820c may interfere with overall protein folding and render the Rv2820c of the non-Beijing/W strains non-functional.
Insights
Genomic analysis identified a specific deletion in the Rv2820c gene of hypervirulent Mycobacterium tuberculosis strains. This Rv2820c gene truncation enhances bacterial virulence in both lab settings and live zebrafish models.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Hypervirulent Mycobacterium tuberculosis strains exhibit increased growth within human macrophages.
- Previous studies identified rapid intracellular growth in hypervirulent M. tuberculosis strains from tuberculous meningitis patients.
Purpose of the Study:
- To investigate genomic polymorphisms in hypervirulent M. tuberculosis strains.
- To determine the role of identified genomic variations in bacterial virulence.
Main Methods:
- Microarray-based comparative genomic hybridization was used to identify polymorphisms.
- Genomic polymorphisms were introduced into Mycobacterium smegmatis and Mycobacterium marinum.
- Recombinant strains' survivability and virulence were assessed in human THP-1 cells and zebrafish models.
Main Results:
- Five genomic polymorphisms were identified, including frameshift deletion Rv2820c'.
- Only Rv2820c' recombinant M. smegmatis showed enhanced survival in THP-1 cells.
- Rv2820c' recombinant M. marinum exhibited increased virulence in zebrafish, leading to faster mortality.
Conclusions:
- The 3' truncated Rv2820c, common in Beijing/W strains, enhances mycobacterial virulence ex vivo and in vivo.
- The intact Rv2820c from non-Beijing/W strains did not confer enhanced virulence.
- Truncation of Rv2820c may impact protein folding, affecting its function in non-Beijing/W strains.

