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Molecular cloning and expression of a gene encoding Cryptosporidium parvum glycoproteins gp40 and gp15
A M Cevallos1, X Zhang, M K Waldor
1Division of Geographic Medicine and Infectious Diseases, New England Medical Center, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
Abstract:
Cryptosporidium parvum is a significant cause of diarrheal disease worldwide. The specific molecules that mediate C. parvum-host cell interactions and the molecular mechanisms involved in the pathogenesis of cryptosporidiosis are unknown. In this study we have shown that gp40, a mucin-like glycoprotein, is localized to the surface and apical region of invasive stages of the parasite and is shed from its surface. gp40-specific antibodies neutralize infection in vitro, and native gp40 binds specifically to host cells, implicating this glycoprotein in C. parvum attachment to and invasion of host cells. We have cloned and sequenced a gene designated Cpgp40/15 that encodes gp40 as well as gp15, an antigenically distinct, surface glycoprotein also implicated in C. parvum-host cell interactions. Analysis of the deduced amino acid sequence of the 981-bp Cpgp40/15 revealed the presence of an N-terminal signal peptide, a polyserine domain, multiple predicted O-glycosylation sites, a single potential N-glycosylation site, and a hydrophobic region at the C terminus, a finding consistent with what is required for the addition of a GPI anchor. There is a single copy of Cpgp40/15 in the C. parvum genome, and this gene does not contain introns. Our data indicate that the two Cpgp40/15-encoded proteins, gp40 and gp15, are products of proteolytic cleavage of a 49-kDa precursor protein which is expressed in intracellular stages of the parasite. The surface localization of gp40 and gp15 and their involvement in the host-parasite interaction suggest that either or both of these glycoproteins may serve as effective targets for specific preventive or therapeutic measures for cryptosporidiosis.
Insights
Researchers identified gp40 and gp15 glycoproteins on Cryptosporidium parvum. These molecules mediate host cell attachment and invasion, suggesting they are potential targets for preventing and treating cryptosporidiosis.
Area of Science:
- Parasitology
- Molecular Biology
- Immunology
Background:
- Cryptosporidium parvum causes significant global diarrheal disease.
- Molecular mechanisms of C. parvum pathogenesis and host cell interactions remain largely unknown.
Purpose of the Study:
- To identify molecules mediating C. parvum-host cell interactions.
- To investigate the role of specific glycoproteins in C. parvum infection.
Main Methods:
- Cloning and sequencing of the Cpgp40/15 gene.
- Analysis of deduced amino acid sequences.
- Localization studies of gp40.
- In vitro neutralization assays using gp40-specific antibodies.
Main Results:
- Identified gp40, a mucin-like glycoprotein on the parasite surface involved in host cell attachment and invasion.
- Cloned the Cpgp40/15 gene encoding both gp40 and gp15.
- gp40-specific antibodies neutralized C. parvum infection in vitro.
- gp40 and gp15 are derived from a precursor protein and are surface-localized.
Conclusions:
- gp40 and gp15 are key mediators of Cryptosporidium parvum attachment to and invasion of host cells.
- These glycoproteins represent promising targets for developing novel preventive or therapeutic strategies against cryptosporidiosis.