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Bone Marrow-derived Macrophage Production
Published on: November 22, 2013
Unique macrophage and tick cell-specific protein expression from the p28/p30-outer membrane protein multigene locus
Vijayakrishna Singu1, Lalitha Peddireddi, Kamesh R Sirigireddy
1Department of Diagnostic Medicine/Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, 66506, USA.
Abstract:
Ehrlichia chaffeensis and Ehrlichia canis are tick-transmitted rickettsial pathogens that cause human and canine monocytic ehrlichiosis respectively. We tested the hypothesis that these pathogens express unique proteins in response to their growth in vertebrate and tick host cells and that this differential expression is similar in closely related Ehrlichia species. Evaluation of nine E. chaffeensis isolates and one E. canis isolate demonstrated that protein expression was host cell-dependent. The differentially expressed proteins included those from the p28/30-Omp multigene locus. E. chaffeensis and E. canis proteins expressed in infected macrophages were primarily the products of the p28-Omp 19 and 20 genes or their orthologues. In cultured tick cells, E. canis expressed only the p30-10 protein, an orthologue of the E. chaffeensis p28-Omp 14 protein which is the only protein expressed by E. chaffeensis propagated in cultured tick cells. The expressed Omp proteins were post-translationally modified to generate multiple molecular forms. E. chaffeensis gene expression from the p28/30-Omp locus was similar in tick cell lines derived from both vector (Amblyomma americanum) and non-vector (Ixodes scapularis) ticks. Differential expression of proteins within the p28/p30-Omp locus may therefore be vital for adaptation of Ehrlichia species to their dual host life cycle.
Insights
Ehrlichia pathogens alter protein expression based on host cells. This differential protein expression, particularly from the p28/30-Omp locus, is crucial for Ehrlichia adaptation to both tick and vertebrate hosts.
Area of Science:
- Microbiology
- Molecular Biology
- Parasitology
Background:
- Ehrlichia chaffeensis and Ehrlichia canis are tick-borne pathogens causing ehrlichiosis in humans and dogs.
- These rickettsial pathogens infect vertebrate and tick hosts, necessitating adaptation strategies.
Purpose of the Study:
- To investigate if Ehrlichia species exhibit differential protein expression in response to vertebrate and tick host cells.
- To determine if this differential expression is conserved among closely related Ehrlichia species.
Main Methods:
- Analysis of protein expression in nine Ehrlichia chaffeensis and one Ehrlichia canis isolates.
- Comparison of protein profiles from pathogens grown in vertebrate (macrophage) and tick cell lines.
- Focus on proteins encoded by the p28/30-Omp multigene locus.
Main Results:
- Protein expression was significantly dependent on the host cell type.
- Differentially expressed proteins primarily originated from the p28/30-Omp locus.
- Ehrlichia species showed distinct protein expression patterns in tick cells, with specific p28/30-Omp orthologues being expressed.
Conclusions:
- Differential protein expression within the p28/30-Omp locus is a key adaptation mechanism for Ehrlichia in its dual-host lifecycle.
- This host-dependent expression allows Ehrlichia to optimize survival and replication in both tick vectors and vertebrate hosts.

