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A Toxoplasma gondii O-glycosyltransferase that modulates bradyzoite cyst wall rigidity is distinct from host homologues.

Authors :
Kumar, Pranav
Tomita, Tadakimi
Gerken, Thomas A.
Ballard, Collin J.
Lee, Yong Sok
Weiss, Louis M.
Samara, Nadine L.
Source :
Nature Communications; 5/6/2024, Vol. 15 Issue 1, p1-14, 14p
Publication Year :
2024

Abstract

Infection with the apicomplexan protozoan Toxoplasma gondii can be life-threatening in immunocompromised hosts. Transmission frequently occurs through the oral ingestion of T. gondii bradyzoite cysts, which transition to tachyzoites, disseminate, and then form cysts containing bradyzoites in the central nervous system, resulting in latent infection. Encapsulation of bradyzoites by a cyst wall is critical for immune evasion, survival, and transmission. O-glycosylation of the protein CST1 by the mucin-type O-glycosyltransferase T. gondii (Txg) GalNAc-T3 influences cyst wall rigidity and stability. Here, we report X-ray crystal structures of TxgGalNAc-T3, revealing multiple features that are strictly conserved among its apicomplexan homologues. This includes a unique 2<superscript>nd</superscript> metal that is coupled to substrate binding and enzymatic activity in vitro and cyst wall O-glycosylation in T. gondii. The study illustrates the divergence of pathogenic protozoan GalNAc-Ts from their host homologues and lays the groundwork for studying apicomplexan GalNAc-Ts as therapeutic targets in disease. A Toxoplasma gondii mucin-type O-glycosyltransferase uses a unique catalytic mechanism to modify bradyzoite cyst wall proteins. A second metal coupled to substrate binding is required for catalysis, while an active site glutamate suggests a double-displacement mechanism. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
177079124
Full Text :
https://doi.org/10.1038/s41467-024-48253-w