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Updated: Jun 24, 2026

Generation of Monoclonal Cultures from Wolbachia-infected Drosophila melanogaster JW18 Cell Line
Published on: June 27, 2025
Proteasome activity in a naïve mosquito cell line infected with Wolbachia pipientis wAlbB
Ann M Fallon1, Bruce A Witthuhn
1Department of Entomology, University of Minnesota, St. Paul, MN 55108, USA. fallo002@umn.edu
Abstract:
We used Wolbachia pipientis strain wAlbB from Aedes albopictus Aa23 cells to infect clonal Ae. albopictus TK-6 cells, which are resistant to 5-bromodeoxyuridine. Infected TK-6 cells were cultured in medium containing 5-bromodeoxyuridine to select against Aa23 cells that might have persisted in the inoculum. Infected TK-6 lines retained the Wolbachia infection for 5 mo, indicating that their metabolic processes support Wolbachia growth and multiplication. To investigate early events after Wolbachia infection, we labeled infected cells with (35)S[methionine/cysteine]. Patterns of labeled proteins on sodium dodecyl sulfate gels were similar in control and infected cells, with the exception of a 29-kDa protein. Tandem mass spectrometry revealed that the 29-kDa band included alpha and beta subunits of the 26S proteasome. Independent confirmation of the up-regulation of the proteasome was established by probing Western blots with a monoclonal antibody to the proteasome-associated co-factor, ubiquitin. Wolbachia's loss of metabolic pathways for the synthesis of most amino acids and retention of pathways for their uptake and metabolism suggest that proteasome activation provides a mechanism whereby controlled degradation of intracellular host proteins would increase availability of amino acids to support establishment and maintenance of the Wolbachia infection.
Insights
Wolbachia infection in mosquito cells up-regulates the proteasome. This host cell machinery likely degrades proteins to provide amino acids, supporting Wolbachia growth and survival.
Area of Science:
- Microbiology
- Cell Biology
- Molecular Biology
Background:
- Wolbachia pipientis is an intracellular bacterium that infects many arthropod species.
- Understanding host-microbe interactions is crucial for controlling insect-borne diseases.
Purpose of the Study:
- To investigate the host cell response to Wolbachia infection in Aedes albopictus cells.
- To identify host proteins affected by Wolbachia infection.
Main Methods:
- Infection of Aedes albopictus TK-6 cells with Wolbachia pipientis wAlbB.
- Metabolic labeling with (35)S[methionine/cysteine] and protein analysis via SDS-PAGE.
- Proteomic analysis using tandem mass spectrometry and Western blotting.
Main Results:
- Wolbachia infection was stably maintained in mosquito cells for 5 months.
- A 29-kDa protein band was identified as 26S proteasome subunits.
- Western blot analysis confirmed proteasome up-regulation via ubiquitin.
Conclusions:
- Wolbachia infection induces proteasome activation in host cells.
- Proteasome-mediated protein degradation may supply essential amino acids for Wolbachia.
- This mechanism supports the establishment and maintenance of Wolbachia infections.

