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Updated: Apr 16, 2026

Total Protein Extraction and 2-D Gel Electrophoresis Methods for Burkholderia Species
Published on: October 15, 2013
Mining host-pathogen protein interactions to characterize Burkholderia mallei infectivity mechanisms
Vesna Memišević1, Nela Zavaljevski1, Seesandra V Rajagopala2
1Department of Defense Biotechnology High Performance Computing Software Applications Institute, Telemedicine and Advanced Technology Research Center, U.S. Army Medical Research and Materiel Command, Fort Detrick, Maryland, United States of America.
Abstract:
Burkholderia pathogenicity relies on protein virulence factors to control and promote bacterial internalization, survival, and replication within eukaryotic host cells. We recently used yeast two-hybrid (Y2H) screening to identify a small set of novel Burkholderia proteins that were shown to attenuate disease progression in an aerosol infection animal model using the virulent Burkholderia mallei ATCC 23344 strain. Here, we performed an extended analysis of primarily nine B. mallei virulence factors and their interactions with human proteins to map out how the bacteria can influence and alter host processes and pathways. Specifically, we employed topological analyses to assess the connectivity patterns of targeted host proteins, identify modules of pathogen-interacting host proteins linked to processes promoting infectivity, and evaluate the effect of crosstalk among the identified host protein modules. Overall, our analysis showed that the targeted host proteins generally had a large number of interacting partners and interacted with other host proteins that were also targeted by B. mallei proteins. We also introduced a novel Host-Pathogen Interaction Alignment (HPIA) algorithm and used it to explore similarities between host-pathogen interactions of B. mallei, Yersinia pestis, and Salmonella enterica. We inferred putative roles of B. mallei proteins based on the roles of their aligned Y. pestis and S. enterica partners and showed that up to 73% of the predicted roles matched existing annotations. A key insight into Burkholderia pathogenicity derived from these analyses of Y2H host-pathogen interactions is the identification of eukaryotic-specific targeted cellular mechanisms, including the ubiquitination degradation system and the use of the focal adhesion pathway as a fulcrum for transmitting mechanical forces and regulatory signals. This provides the mechanisms to modulate and adapt the host-cell environment for the successful establishment of host infections and intracellular spread.
Insights
Burkholderia mallei virulence factors target host proteins to promote infection. Analyzing these interactions reveals bacterial strategies, including manipulation of ubiquitination and focal adhesion pathways for host cell invasion.
Area of Science:
- Microbiology
- Host-Pathogen Interactions
- Systems Biology
Background:
- Burkholderia pathogenicity depends on virulence factors that manipulate host cells.
- Previous yeast two-hybrid (Y2H) screening identified novel Burkholderia proteins attenuating disease.
- Understanding these interactions is crucial for combating Burkholderia infections.
Purpose of the Study:
- To extend the analysis of Burkholderia mallei virulence factors and their interactions with human proteins.
- To map bacterial influence on host cell processes and pathways.
- To infer functional roles of B. mallei proteins using cross-species interaction analysis.
Main Methods:
- Yeast two-hybrid (Y2H) screening to identify protein interactions.
- Topological analyses to assess host protein connectivity and modules.
- Development and application of the Host-Pathogen Interaction Alignment (HPIA) algorithm.
- Comparative analysis of host-pathogen interactions across B. mallei, Yersinia pestis, and Salmonella enterica.
Main Results:
- Targeted host proteins typically exhibit extensive interactions with other host proteins, many also targeted by B. mallei.
- The HPIA algorithm successfully inferred putative roles for B. mallei proteins, with 73% matching existing annotations.
- Identified key eukaryotic-specific mechanisms exploited by B. mallei, including the ubiquitination system and focal adhesion pathway.
Conclusions:
- Burkholderia mallei utilizes specific host-pathogen interactions to modulate host cell functions for infection.
- Targeting the ubiquitination degradation system and focal adhesion pathway are critical bacterial strategies.
- This research provides insights into bacterial pathogenesis and potential therapeutic targets.
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