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Updated: May 23, 2026

Preparation of Mycobacterium tuberculosis Culture Filtrate to Understand TB Pathogenesis
Published on: March 28, 2025
Comparative analysis of Mycobacterium tuberculosis pe and ppe genes reveals high sequence variation and an apparent
Christopher R E McEvoy1, Ruben Cloete, Borna Müller
1Department of Science and Technology, Medical Research Council Centre for Molecular and Cellular Biology, Stellenbosch University, Tygerberg, Cape Town, South Africa. cmcevoy@unimelb.edu.au
Abstract:
Mycobacterium tuberculosis complex (MTBC) genomes contain 2 large gene families termed pe and ppe. The function of pe/ppe proteins remains enigmatic but studies suggest that they are secreted or cell surface associated and are involved in bacterial virulence. Previous studies have also shown that some pe/ppe genes are polymorphic, a finding that suggests involvement in antigenic variation. Using comparative sequence analysis of 18 publicly available MTBC whole genome sequences, we have performed alignments of 33 pe (excluding pe_pgrs) and 66 ppe genes in order to detect the frequency and nature of genetic variation. This work has been supplemented by whole gene sequencing of 14 pe/ppe (including 5 pe_pgrs) genes in a cohort of 40 diverse and well defined clinical isolates covering all the main lineages of the M. tuberculosis phylogenetic tree. We show that nsSNP's in pe (excluding pgrs) and ppe genes are 3.0 and 3.3 times higher than in non-pe/ppe genes respectively and that numerous other mutation types are also present at a high frequency. It has previously been shown that non-pe/ppe M. tuberculosis genes display a remarkably low level of purifying selection. Here, we also show that compared to these genes those of the pe/ppe families show a further reduction of selection pressure that suggests neutral evolution. This is inconsistent with the positive selection pressure of "classical" antigenic variation. Finally, by analyzing such a large number of genes we were able to detect large differences in mutation type and frequency between both individual genes and gene sub-families. The high variation rates and absence of selective constraints provides valuable insights into potential pe/ppe function. Since pe/ppe proteins are highly antigenic and have been studied as potential vaccine components these results should also prove informative for aspects of M. tuberculosis vaccine design.
Insights
The study reveals high genetic variation in Mycobacterium tuberculosis complex pe/ppe genes, suggesting neutral evolution rather than classical antigenic variation. These findings offer insights into pe/ppe protein function and tuberculosis vaccine design.
Area of Science:
- Genomics
- Microbiology
- Immunology
Background:
- The Mycobacterium tuberculosis complex (MTBC) harbors large pe and ppe gene families with unknown functions, though they are implicated in virulence and potential antigenic variation.
- Previous research indicates pe/ppe proteins are secreted or cell surface-associated, contributing to bacterial virulence.
Purpose of the Study:
- To investigate the frequency and nature of genetic variation within pe and ppe genes in MTBC.
- To understand the evolutionary pressures acting on pe/ppe genes and their implications for protein function and vaccine development.
Main Methods:
- Comparative sequence analysis of 18 MTBC whole genome sequences, aligning 33 pe and 66 ppe genes.
- Whole gene sequencing of 14 pe/ppe genes (including 5 pe_pgrs) in 40 diverse clinical isolates representing major MTBC lineages.
Main Results:
- Non-synonymous single nucleotide polymorphisms (nsSNPs) in pe and ppe genes were 3.0 and 3.3 times higher, respectively, than in non-pe/ppe genes.
- A further reduction in selection pressure on pe/ppe genes compared to non-pe/ppe genes suggests neutral evolution, contradicting classical antigenic variation models.
- Significant differences in mutation type and frequency were observed between individual genes and sub-families within the pe/ppe families.
Conclusions:
- High variation rates and lack of selective constraints in pe/ppe genes provide crucial insights into their function.
- Findings are relevant for Mycobacterium tuberculosis vaccine design, considering the antigenic nature of pe/ppe proteins.
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