4.8 Article

Victors: a web-based knowledge base of virulence factors in human and animal pathogens

Journal

NUCLEIC ACIDS RESEARCH
Volume 47, Issue D1, Pages D693-D700

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gky999

Keywords

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Funding

  1. NIH-NIAID R01 [R01AI081062]
  2. University of Michigan startup fund
  3. Strategic Priority Research Program of the Chinese Academy of Sciences [XDB13040700]
  4. National Program on Key Basic Research Project of China [2017YFA0505500, 2014CB910504]
  5. National Natural Science Foundation of China (NSFC) [31771476, 91529303, 81471047]
  6. Innovation Program of Shanghai Municipal Education Commission [13ZZ072]
  7. Shanghai Pujiang Program [13PJD032]
  8. VA Merit Grant [I01BX000656]
  9. VA Research Career Scientist Award [1IK6BX003615-01]
  10. Dr. Yongqun He bridge fund

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Virulence factors (VFs) are molecules that allow microbial pathogens to overcome host defense mechanisms and cause disease in a host. It is critical to study VFs for better understanding microbial pathogenesis and host defense mechanisms. Victors (http://www.phidias.us/victors) is a novel, manually curated, web-based integrative knowledge base and analysis resource for VFs of pathogens that cause infectious diseases in human and animals. Currently, Victors contains 5296 VFs obtained via manual annotation from peer-reviewed publications, with 4648, 179, 105 and 364 VFs originating from 51 bacterial, 54 viral, 13 parasitic and 8 fungal species, respectively. Our data analysis identified many VF-specific patterns. Within the global VF pool, cytoplasmic proteins were more common, while adhesins were less common compared to findings on protective vaccine antigens. Many VFs showed homology with host proteins and the human proteins interacting with VFs represented the hubs of human-pathogen interactions. All Victors data are queriable with a user-friendly web interface. The VFs can also be searched by a customized BLAST sequence similarity searching program. These VFs and their interactions with the host are represented in a machine-readable Ontology of Host-Pathogen Interactions. Victors supports the One Health' research as a vital source of VFs in human and animal pathogens.

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