Trans-genera reconstitution and complementation of an adhesion complex in Toxoplasma gondii
Open Access
- 4 May 2004
- journal article
- research article
- Published by Hindawi Limited in Cellular Microbiology
- Vol. 6 (8) , 771-782
- https://doi.org/10.1111/j.1462-5822.2004.00403.x
Abstract
Eimeria tenella and Toxoplasma gondii are obligate intracellular parasites belonging to the phylum Apicomplexa. In T. gondii, the microneme protein TgMIC2 contains two well-defined adhesive motifs and is thought to be a key participant in the attachment and invasion of host cells. However, several attempts by different laboratories to generate a knockout (KO) of TgMIC2 have failed, implying that TgMIC2 is an essential gene. As Eimeria and Toxoplasma utilize the same mechanisms of invasion and have highly conserved adhesive proteins, we hypothesized that the orthologous molecule in Eimeria, EtMIC1, could functionally substitute in Toxoplasma to allow a knockout of TgMIC2. TgMIC2 is partnered with a protein called TgM2AP, which corresponds to EtMIC2 in Eimeria. Because the activity of TgMIC2 is most likely tightly linked to its association with TgM2AP, it was thought that the activity of EtMIC1 might similarly require its partner EtMIC2. EtMIC1 and EtMIC2 were introduced into T. gondii, and the presence of EtMIC1 allowed the first knockout clone of TgMIC2 to be obtained. The TgMIC2 KO resulted in significantly decreased numbers of invaded parasites compared to the parental clone. In the absence of TgMIC2, TgM2AP was incorrectly processed and mistargeted to the parasitophorous vacuole instead of the micronemes. These findings indicate that the EtMIC1 can compensate for the essential requirement of TgMIC2, but it cannot fully functionally substitute for TgMIC2 in the invasion process or for supporting the correct maturation and targeting of TgM2APKeywords
This publication has 36 references indexed in Scilit:
- C-terminal Processing of the Toxoplasma Protein MIC2 Is Essential for Invasion into Host CellsJournal of Biological Chemistry, 2003
- Role of Toxoplasma gondii Myosin A in Powering Parasite Gliding and Host Cell InvasionScience, 2002
- Toxoplasma gondii Homologue of Plasmodium Apical Membrane Antigen 1 Is Involved in Invasion of Host CellsInfection and Immunity, 2000
- Functional Conservation of the Human Homolog of the Yeast Pre-mRNA Splicing Factor Prp17pPublished by Elsevier ,1998
- The MIC1 microneme protein of Toxoplasma gondii contains a duplicated receptor-like domain and binds to host cell surfaceMolecular and Biochemical Parasitology, 1996
- Insertional Tagging, Cloning, and Expression of the Hypoxanthine-Xanthine-Guanine Phosphoribosyltransferase GeneJournal of Biological Chemistry, 1996
- Restriction enzyme-mediated integration elevates transformation frequency and enables co-transfection of Toxoplasma gondiiMolecular and Biochemical Parasitology, 1995
- Toxoplasmic Encephalitis in AIDSClinical Infectious Diseases, 1992
- Toxoplasma gondii: Isolation and preliminary characterization of temperature-sensitive mutantsExperimental Parasitology, 1976
- TOXOPLASMIC ENCEPHALITIS IN CHILDRENJAMA, 1941