Cryptosporidium Oocyst Wall Proteins are true oocyst wall proteins, with COWP8 functioning to hold the inner and outer layers of the oocyst wall together
Bacchetti, R.; Stevens, S.; Lemgruber, L.; Oliva, M. A. G.; Sands, E. M.; Alexandrou, K.; Tinti, M.; Robinson, L.; Hanna, J. C.; Seizova, S.; Goddard, P.; Vassalli, M.; Pawlowic, M. C.
Show abstract
Cryptosporidiosis is a significant cause of diarrhoeal disease contributing to substantial morbidity and mortality for the immunocompromised and for young children, especially those who are malnourished. There are no vaccines available and no effective treatments for these patients. Another challenge is that Cryptosporidia are waterborne and resistant to common water treatments including chlorination. Cryptosporidia are transmitted as an oocyst that is made up of a hardy oocyst wall that protects four parasites. Little is understood about how the oocyst is constructed, its composition, and the how it resists chlorination. A family of predicted Cryptosporidium Oocyst Wall Proteins (COWPs) was identified from the genome. Using a genetic approach, we confirm that all members of the COWP family localise to the oocyst wall. Our studies indicate that COWP2, 3 and 4 localise specifically to the oocyst "suture", a zipper-like structure on the oocyst wall from which parasites emerge during infection. In parasites lacking COWP8, we observe that the inner and outer layers of the oocyst wall are no longer associated suggesting a role for COWP8 in oocyst wall morphology. Despite loss of COWP8, these transgenic parasites are viable, unchanged in mechanical strength, and retain resistance to chlorination. This work sets the foundation for future exploration of Cryptosporidium transmission.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Substrate-mediated regulation of the arginine transporter of Toxoplasma gondii 96%
- An apical protein, Pcr2, is required for persistent movement by the human parasite Toxoplasma gondii 96%
- Schistosoma mansoni α-N-acetylgalactosaminidase (SmNAGAL) regulates coordinated parasite movement and egg production 96%
Similar papers in this journal
Similar papers in this journal
- Metabolic Adaptability and Nutrient Scavenging in Toxoplasma gondii: Insights from Ingestion Pathway-Deficient Mutants 94%
- Co-immunoprecipitation with MYR1 identifies three additional proteins within the Toxoplasma parasitophorous vacuole required for translocation of dense granule effectors into host cells 94%
- Toxoplasma gondii Toxolysin 4 contributes to efficient parasite egress from host cells 94%
Similar papers in this journal
- Distinct features of the Leishmania cap-binding protein LeishIF4E2 revealed by CRISPR-Cas9 mediated heterozygous deletion 94%
- Long-read RNA sequencing of human and animal filarial parasites improves gene models and discovers operons 93%
- Distinct gene expression patterns in vector-residing Leishmania infantum identify parasite stage-enriched markers 93%
Similar papers in this journal
- Toxoplasma gondii-s basal complex: the other apicomplexan business end is multifunctional 95%
- Auranofin resistance in Toxoplasma gondii decreases the accumulation of reactive oxygen species but does not target parasite thioredoxin reductase 93%
- An extracellular redox signal triggers calcium release and impacts the asexual development of Toxoplasma gondii 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.