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Genetic analysis of praziquantel response in schistosome parasites implicates a transient receptor potential channel.
Le Clec'h, Winka; Chevalier, Frédéric D; Mattos, Ana Carolina A; Strickland, Amanda; Diaz, Robbie; McDew-White, Marina; Rohr, Claudia M; Kinung'hi, Safari; Allan, Fiona; Webster, Bonnie L; Webster, Joanne P; Emery, Aidan M; Rollinson, David; Djirmay, Amadou Garba; Al Mashikhi, Khalid M; Al Yafae, Salem; Idris, Mohamed A; Moné, Hélène; Mouahid, Gabriel; LoVerde, Philip; Marchant, Jonathan S; Anderson, Timothy J C.
Afiliação
  • Le Clec'h W; Texas Biomedical Research Institute, San Antonio, TX 78227, USA.
  • Chevalier FD; Texas Biomedical Research Institute, San Antonio, TX 78227, USA.
  • Mattos ACA; University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.
  • Strickland A; Texas Biomedical Research Institute, San Antonio, TX 78227, USA.
  • Diaz R; Texas Biomedical Research Institute, San Antonio, TX 78227, USA.
  • McDew-White M; Texas Biomedical Research Institute, San Antonio, TX 78227, USA.
  • Rohr CM; Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
  • Kinung'hi S; National Institute for Medical Research, Mwanza, United Republic of Tanzania.
  • Allan F; London Centre for Neglected Tropical Disease Research (LCNDTR), Imperial College, London, UK.
  • Webster BL; Wolfson Wellcome Biomedical Laboratories, Natural History Museum, London, UK.
  • Webster JP; London Centre for Neglected Tropical Disease Research (LCNDTR), Imperial College, London, UK.
  • Emery AM; Wolfson Wellcome Biomedical Laboratories, Natural History Museum, London, UK.
  • Rollinson D; London Centre for Neglected Tropical Disease Research (LCNDTR), Imperial College, London, UK.
  • Djirmay AG; Centre for Emerging, Endemic and Exotic Diseases (CEEED), Royal Veterinary College, University of London, London, UK.
  • Al Mashikhi KM; London Centre for Neglected Tropical Disease Research (LCNDTR), Imperial College, London, UK.
  • Al Yafae S; Wolfson Wellcome Biomedical Laboratories, Natural History Museum, London, UK.
  • Idris MA; London Centre for Neglected Tropical Disease Research (LCNDTR), Imperial College, London, UK.
  • Moné H; Wolfson Wellcome Biomedical Laboratories, Natural History Museum, London, UK.
  • Mouahid G; Réseau International Schistosomiases Environnemental Aménagement et Lutte (RISEAL), Niamey, Niger.
  • LoVerde P; World Health Organization, Geneva, Switzerland.
  • Marchant JS; Directorate General of Health Services, Dhofar Governorate, Salalah, Sultanate of Oman.
  • Anderson TJC; Directorate General of Health Services, Dhofar Governorate, Salalah, Sultanate of Oman.
Sci Transl Med ; 13(625): eabj9114, 2021 12 22.
Article em En | MEDLINE | ID: mdl-34936381
ABSTRACT
Mass drug administration with praziquantel (PZQ) monotherapy is considered the mainstay for control and elimination of the parasites causing schistosomiasis in humans. This drug shows imperfect cure rates in the field, and parasites showing reduced PZQ response can be selected in the laboratory, but the extent of resistance in Schistosoma mansoni populations is unknown. We examined the genetic basis of the variation in response in a PZQ-selected S. mansoni population (SmLE-PZQ-R) in which 35% of the parasitic worms survive high-dose PZQ (73 micrograms per milliliter) treatment. We used genome-wide association to map loci underlying PZQ response and identified a transient receptor potential (Sm.TRPMPZQ) channel (Smp_246790) within the major chromosome 3 peak that is activated by nanomolar concentrations of PZQ. The PZQ response showed recessive inheritance and marker-assisted selection of parasites at a single Sm.TRPMPZQ SNP that produced populations of PZQ-enriched resistant (PZQ-ER) and PZQ-enriched sensitive (PZQ-ES) parasites, exhibiting >377-fold difference in PZQ response. The PZQ-ER parasites survived treatment in rodents at higher frequencies compared with PZQ-ES, and resistant parasites exhibited 2.25-fold lower expression of Sm.TRPMPZQ relative to sensitive parasites. Specific chemical blockers of Sm.TRPMPZQ enhanced PZQ resistance, whereas Sm.TRPMPZQ activators increased sensitivity. We surveyed Sm.TRPMPZQ sequence variations in 259 parasites from different global sites and identified one nonsense mutation that resulted in a truncated protein with no PZQ binding site. Our results demonstrate that Sm.TRPMPZQ underlies variation in PZQ responses in S. mansoni and provides an approach for monitoring emerging PZQ-resistant alleles in schistosome elimination programs.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Parasitos / Esquistossomose mansoni / Canais de Potencial de Receptor Transitório / Anti-Helmínticos Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Parasitos / Esquistossomose mansoni / Canais de Potencial de Receptor Transitório / Anti-Helmínticos Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article