Toxoplasma gondii and related Apicomplexan parasites including Cryptosporidium cause significant human disease particularly in AIDS patients. T. gondii and C. parvum are also category B bioterrorism agents that pose a particular threat to the immunocompromised. The Apicomplexa are named for their unique apical secretory organelles-micronemes, rhoptries and dense granules. Proteolytic processing of secretory organelle contents occurs throughout the Apicomplexa. We have characterized two subtilisin-like serine proteinases (subtilases) from T. gondii, TgSUB1 and TgSUB2. TgSUB1 localizes to the micronemes, whereas TgSUB2 is a rhoptry protein that appears to be a rhoptry protein maturase. TgSUB2 cannot be disrupted, and antisense depletion of TgSUB2 results in parasites that divide poorly, have few rhoptries, and have large aberrant cytoplasmic vesicles. In contrast, TgSUB1 disruptants are viable. We hypothesize that Toxoplasma subtilases play an essential role in the biogenesis or function of micronemes and rhoptries. We plan to test the importance of TgSUB2 using genetic methods and to characterize TgSUB2 biological substrates. Because proteinase inhibitors typically mimic substrates, identification of a natural substrate for TgSUB2 would accelerate synthesis of specific inhibitors and elucidate the role of TgSUB2 in parasite survival. We will use recombinant TgSUB2 to develop an in vitro assay for TgSUB2 activity that can be used to identify substrates and unique inhibitors of TgSUB2. Finally, we will investigate the expression of other subtilase genes present in the T. gondii genome. We hypothesize that TgSUB1 is not essential because its function is redundant with other subtilase family members. We will determine the expression pattern and localization of other subtilases in T. gondii tachyzoites and use genetic techniques to determine if they have overlapping function with TgSUB1. In addition to illuminating the function and biology of T. gondii secretory organelles, these studies will determine whether subtilases are a viable chemotherapeutic target for treatment of human infections with Apicomplexan parasites.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI046985-06
Application #
7065666
Study Section
AIDS-associated Opportunistic Infections and Cancer Study Section (AOIC)
Program Officer
Rogers, Martin J
Project Start
1999-12-01
Project End
2010-01-31
Budget Start
2006-02-01
Budget End
2007-01-31
Support Year
6
Fiscal Year
2006
Total Cost
$362,526
Indirect Cost
Name
Albert Einstein College of Medicine
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
110521739
City
Bronx
State
NY
Country
United States
Zip Code
10461
Feintuch, Catherine Manix; Saidi, Alex; Seydel, Karl et al. (2016) Activated Neutrophils Are Associated with Pediatric Cerebral Malaria Vasculopathy in Malawian Children. MBio 7:e01300-15
Subramaniam, Krishanthi S; Spaulding, Emily; Ivan, Emil et al. (2015) The T-Cell Inhibitory Molecule Butyrophilin-Like 2 Is Up-regulated in Mild Plasmodium falciparum Infection and Is Protective During Experimental Cerebral Malaria. J Infect Dis 212:1322-31
Serrano, Hector; Blanchard, John S (2013) Kinetic and isotopic characterization of L-proline dehydrogenase from Mycobacterium tuberculosis. Biochemistry 52:5009-15
Upadhya, Rajendra; Kim, Kami; Hogue-Angeletti, Ruth et al. (2011) Improved techniques for endogenous epitope tagging and gene deletion in Toxoplasma gondii. J Microbiol Methods 85:103-13
Filonov, Grigory S; Piatkevich, Kiryl D; Ting, Li-Min et al. (2011) Bright and stable near-infrared fluorescent protein for in vivo imaging. Nat Biotechnol 29:757-61
Vera, Iset Medina; Beatty, Wandy L; Sinnis, Photini et al. (2011) Plasmodium protease ROM1 is important for proper formation of the parasitophorous vacuole. PLoS Pathog 7:e1002197
Lagal, Vanessa; Binder, Emily M; Huynh, My-Hang et al. (2010) Toxoplasma gondii protease TgSUB1 is required for cell surface processing of micronemal adhesive complexes and efficient adhesion of tachyzoites. Cell Microbiol 12:1792-808
Wanyiri, Jane W; Techasintana, Patsharaporn; O'Connor, Roberta M et al. (2009) Role of CpSUB1, a subtilisin-like protease, in Cryptosporidium parvum infection in vitro. Eukaryot Cell 8:470-7
Kim, Kami; Weiss, Louis M (2008) Toxoplasma: the next 100years. Microbes Infect 10:978-84
Binder, Emily M; Lagal, Vanessa; Kim, Kami (2008) The prodomain of Toxoplasma gondii GPI-anchored subtilase TgSUB1 mediates its targeting to micronemes. Traffic 9:1485-96

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