Literature DB >> 1920144

A soluble phospholipase of Toxoplasma gondii associated with host cell penetration.

L D Saffer1, J D Schwartzman.   

Abstract

We previously reported that phospholipase increases host cell penetration by Toxoplasma gondii. Here we show that calcium-dependent phospholipase A (PLA) activity is found in the supernatant of sonically disrupted T. gondii. When fractions of disrupted T. gondii were incubated with host cells, the release of fatty acids and lysolipids was detected. Fractions of sonically disrupted T. gondii with PLA activity increased T. gondii host cell penetration in a bioassay. In addition, a protein of approximately 20 kDa was detected by immunoblot of T. gondii antigens with horse antiserum to snake venom, the major antibody of which recognizes PLA2. Incubation of T. gondii with exogenous PLA2 resulted in increased solubility of a rhoptry protein. This protein, which we previously characterized as involved with enhanced parasite invasion of host cells and which is recognized by monoclonal antibody Tg49, was detected in increased amounts in supernatant fractions of extracellular parasites treated with PLA2. Whereas without PLA2 treatment, it is only slightly soluble under physiological conditions. This raises the possibility that PLA may be implicated in the release of rhoptry proteins.

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Year:  1991        PMID: 1920144     DOI: 10.1111/j.1550-7408.1991.tb04816.x

Source DB:  PubMed          Journal:  J Protozool        ISSN: 0022-3921


  16 in total

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6.  A Cryptosporidium parvum genomic region encoding hemolytic activity.

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Authors:  R C G Pollok; V McDonald; P Kelly; M J G Farthing
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9.  Eicosanoid production by mouse peritoneal macrophages during Toxoplasma gondii penetration: role of parasite and host cell phospholipases.

Authors:  J F Thardin; C M'Rini; M Beraud; J Vandaele; M F Frisach; M H Bessieres; J P Seguela; B Pipy
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10.  4-Bromophenacyl bromide specifically inhibits rhoptry secretion during Toxoplasma invasion.

Authors:  Sandeep Ravindran; Melissa B Lodoen; Steven H L Verhelst; Matthew Bogyo; John C Boothroyd
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