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Complexity of the MSG gene family of Pneumocystis carinii
Scott P Keely1, James R Stringer
1Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati College of Medicine, Cincinnati, Ohio, 45220, USA. keelysp@ucmail.uc.edu
Background:
The relationship between the parasitic fungus Pneumocystis carinii and its host, the laboratory rat, presumably involves features that allow the fungus to circumvent attacks by the immune system. It is hypothesized that the major surface glycoprotein (MSG) gene family endows Pneumocystis with the capacity to vary its surface. This gene family is comprised of approximately 80 genes, which each are approximately 3 kb long. Expression of the MSG gene family is regulated by a cis-dependent mechanism that involves a unique telomeric site in the genome called the expression site. Only the MSG gene adjacent to the expression site is represented by messenger RNA. Several P. carinii MSG genes have been sequenced, which showed that genes in the family can encode distinct isoforms of MSG. The vast majority of family members have not been characterized at the sequence level.
Results:
The first 300 basepairs of MSG genes were subjected to analysis herein. Analysis of 581 MSG sequence reads from P. carinii genomic DNA yielded 281 different sequences. However, many of the sequence reads differed from others at only one site, a degree of variation consistent with that expected to be caused by error. Accounting for error reduced the number of truly distinct sequences observed to 158, roughly twice the number expected if the gene family contains 80 members. The size of the gene family was verified by PCR. The excess of distinct sequences appeared to be due to allelic variation. Discounting alleles, there were 73 different MSG genes observed. The 73 genes differed by 19% on average. Variable regions were rich in nucleotide differences that changed the encoded protein. The genes shared three regions in which at least 16 consecutive basepairs were invariant. There were numerous cases where two different genes were identical within a region that was variable among family members as a whole, suggesting recombination among family members.
Conclusion:
A set of sequences that represents most if not all of the members of the P. carinii MSG gene family was obtained. The protein-changing nature of the variation among these sequences suggests that the family has been shaped by selection for protein variation, which is consistent with the hypothesis that the MSG gene family functions to enhance phenotypic variation among the members of a population of P. carinii.
Insights
Pneumocystis carinii uses its major surface glycoprotein (MSG) gene family to vary its surface, allowing immune system evasion. This study identified 73 distinct MSG genes, supporting their role in fungal phenotypic variation.
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Pneumocystis carinii evades host immune responses, potentially through surface variation.
- The major surface glycoprotein (MSG) gene family is hypothesized to mediate this surface variability.
- This gene family comprises approximately 80 genes, regulated by a unique telomeric expression site.
Purpose of the Study:
- To characterize the sequence diversity within the P. carinii MSG gene family.
- To determine the extent of variation and identify distinct MSG genes.
- To investigate the role of MSG genes in P. carinii's phenotypic variation.
Main Methods:
- Analysis of 581 MSG gene sequence reads from P. carinii genomic DNA.
- Sequence error correction to identify truly distinct sequences.
- Polymerase Chain Reaction (PCR) to verify gene family size.
Main Results:
- 158 distinct MSG sequences were identified after accounting for errors, roughly double the expected number.
- Excluding alleles, 73 different MSG genes were observed, with an average sequence difference of 19%.
- Variable regions showed nucleotide differences altering the encoded protein, suggesting selection for protein variation.
Conclusions:
- A comprehensive set of P. carinii MSG gene family sequences was obtained.
- The observed protein-altering variation supports selection for enhanced phenotypic diversity.
- This diversity likely contributes to P. carinii's ability to evade host immune responses.
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