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Spirocerca lupi draft genome, vaccine and anthelmintic targets.

Wiekolize Rothmann-MeyerKershney NaidooPamela J de Waal
Published in: Molecular and biochemical parasitology (2024)
Spirocerca lupi is a parasitic nematode affecting predominantly domestic dogs. It causes spirocercosis, a disease that is often fatal. The assembled draft genome of S. lupi consists of 13,627 predicted protein-coding genes and is approximately 150 Mb in length. Several known anthelmintic gene targets such as for β-Tubulin, glutamate, and GABA receptors as well as known vaccine gene targets such as cysteine protease inhibitor and cytokines were identified in S. lupi by comparing orthologs of C. elegans anthelmintic gene targets as well as orthologs to known vaccine candidates. New anthelmintic targets were predicted through an inclusion-exclusion strategy and new vaccine targets were predicted through an immunoinformatics approach. New anthelminthic targets include DNA-directed RNA polymerases, chitin synthase, polymerases, and other enzymes. New vaccine targets include cuticle collagens. These gene targets provide a starting platform for new drug identification and vaccine design.
Keyphrases
  • genome wide
  • copy number
  • genome wide identification
  • emergency department
  • dna methylation
  • high throughput
  • cell free
  • circulating tumor
  • single molecule
  • binding protein
  • nucleic acid
  • bioinformatics analysis