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Genetic variability and stability of Anaplasma phagocytophila msp2 (p44)
Karen Caspersen1, Jin-Ho Park, Surekha Patil
1Department of Pathology Division of Medical Microbiology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Abstract:
Anaplasma (Ehrlichia) phagocytophila's major immunodominant surface protein antigen, Msp2 (P44, 44-kDa antigen), is encoded by a family of paralogous genes characterized by conserved sequences flanking a hypervariable region. The antigenic profiles of most strains of A. phagocytophila are different, and the differences are principally related to Msp2 expression. To date, multiple unique msp2 gene paralogs have been found in A. phagocytophila isolates, but the overall number in the genome of a single strain is not yet known. Changes in msp2 expression may be related to antigenic variability; thus, we examined the minimal complement of msp2 genes or pseudogenes in two strains of A. phagocytophila and the number of transcriptionally active msp2 gene paralogs during low-passage, steady-state, in vitro propagation. Of 15 BDS strain clones, 1 had a hypervariable region identical to the region in a clone obtained from a BDS strain genomic library previously prepared from organisms after only two horse passages. When 124 Webster strain clones were examined, 18 unique hypervariable regions were identified. Of 64 Webster strain cDNA clones, 56 (87.5%) were derived from a single gene, and transcripts from six additional msp2 genes were also identified. The sequences of several hypervariable regions that were > or = 97% similar to regions present in other strains were identified by performing a BLAST analysis of sequences deposited in the GenBank database. These findings suggest that antigenic variability results from transcription of one or a few of the multiple paralogs and not from genetic instability that results in random accumulated mutations, although the possibility that gene recombination plays a role cannot be eliminated. The predominant Msp2 pattern in vitro is determined by transcription from a single gene.
Insights
Anaplasma phagocytophila
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Anaplasma phagocytophila exhibits antigenic variability primarily due to its major surface protein 2 (Msp2).
- The msp2 gene family in A. phagocytophila contains multiple paralogs with conserved flanking regions and a hypervariable region.
Purpose of the Study:
- To investigate the minimal complement of msp2 genes and pseudogenes in A. phagocytophila strains.
- To determine the number of transcriptionally active msp2 gene paralogs during in vitro propagation.
Main Methods:
- Genomic and cDNA cloning and sequencing of msp2 genes from BDS and Webster strains.
- BLAST analysis of msp2 sequences against the GenBank database.
Main Results:
- Analysis of BDS and Webster strains revealed multiple unique msp2 hypervariable regions.
- In vitro propagation showed that transcription predominantly originates from a single msp2 gene, with transcripts from six additional genes identified in the Webster strain.
- Sequence similarity analysis indicated potential inter-strain gene sharing.
Conclusions:
- Antigenic variability in A. phagocytophila is likely driven by the transcription of one or a few msp2 paralogs.
- While genetic instability is unlikely to be the primary driver, gene recombination cannot be excluded as a contributing factor.
- The predominant Msp2 expression pattern in vitro is controlled by transcription from a single gene.