DBSecSys 2.0: a database of Burkholderia mallei and Burkholderia pseudomallei secretion systems

Vesna Memišević1, Kamal Kumar1, Nela Zavaljevski1

  • 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, MD 21702, USA.

BMC Bioinformatics
|September 22, 2016
PubMed
Abstract

Insights

The expanded DBSecSys 2.0 database now includes detailed information on secretion system proteins for Burkholderia mallei and Burkholderia pseudomallei. This resource aids in comparing these pathogens and their interactions, advancing research on glanders and melioidosis.

Area of Science:

  • Microbiology
  • Pathogen Biology
  • Bioinformatics

Background:

  • Burkholderia mallei and B. pseudomallei cause glanders and melioidosis, respectively, with significant morbidity and mortality.
  • These genetically related pathogens share virulence factors, including secretion systems crucial for pathogenicity.
  • Secretion system proteins, pathogenic mechanisms, and host interactions for these bacteria remain incompletely characterized.

Purpose of the Study:

  • To expand the DBSecSys database with comprehensive information on B. pseudomallei secretion system proteins.
  • To provide updated and new data for B. mallei secretion system proteins.
  • To facilitate comparative studies of these closely related pathogens and their host interactions.

Main Methods:

  • Manual curation and computational analysis of literature data.
  • Integration of information on secretion systems, interacting targets, and host-pathogen interactions.
  • Inclusion of data on pathogenic mechanisms and virulence attenuation experiments.
  • Updates to the database interface and data access layer for efficient searching.

Main Results:

  • DBSecSys 2.0 now includes updated information for 163 B. mallei proteins and new data for 281 B. pseudomallei proteins.
  • The database details 5 secretion systems, 1,633 interacting targets, and extensive host-pathogen interactions for both species.
  • Information on 13 pathogenic mechanisms and numerous virulence attenuation experiments is incorporated.
  • Enhanced web interface allows faster retrieval of orthologous protein information.

Conclusions:

  • DBSecSys 2.0 offers a unique, comprehensive resource for studying B. mallei and B. pseudomallei secretion systems.
  • The database supports comparative analyses of these pathogens and their host interactions.
  • Accessible at http://dbsecsys.bhsai.org, it advances research into glanders and melioidosis.

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