Proteomic analysis of a mosquito host cell response to persistent Wolbachia infection

Gerald Baldridge1, LeeAnn Higgins2, Bruce Witthuhn2

  • 1Department of Entomology, University of Minnesota, 1980 Folwell Ave., St. Paul, MN 55108, USA.

Insights

Wolbachia bacteria alter mosquito cell metabolism, suppressing host growth pathways while boosting energy production. This research aids in manipulating Wolbachia for vector control and disease treatment.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Vector Biology

Background:

  • Wolbachia pipientis is an intracellular bacterium relevant for filarial disease treatment and insect vector population control.
  • Understanding host-pathogen interactions is crucial for developing Wolbachia-based strategies.

Purpose of the Study:

  • To compare the proteomes of Wolbachia-infected Aedes albopictus cells with uninfected controls.
  • To identify host cell pathways affected by Wolbachia infection.
  • To provide a framework for manipulating insect cell lines for Wolbachia applications.

Main Methods:

  • Proteomic analysis using iTRAQ to compare protein abundance between infected and uninfected mosquito cells.
  • Bioinformatic analysis to identify differentially abundant proteins and their functional roles.

Main Results:

  • 815 out of approximately 2500 proteins were differentially abundant between infected and uninfected cells.
  • Infected cells showed elevated energy metabolism proteins and suppressed host DNA replication, transcription, and translation pathways.
  • Elevated Vacuolar ATPase subunits were observed, consistent with intracellular Wolbachia vacuoles.
  • Proteins involved in ROS neutralization, protein modification, and signaling were also differentially regulated.

Conclusions:

  • Wolbachia manipulates host cell metabolism to support its own replication and potentially suppress host cell proliferation.
  • The study identified potential targets for manipulating insect cell lines to enhance Wolbachia production for genetic applications.
  • The findings support further investigation into Wolbachia-flavivirus interactions in mosquitoes.

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