α-Galactosyl residues on Trypanosoma cruzi trypomastigote glycoconjugates contribute to host-cell invasion via Galectin-3 and Annexin A2–S100A10 complex

Linear, nonreducing terminal a-galactopyranosyl (a-Gal) epitopes are displayed on the major surface glycosylphosphatidylinositol (GPI)-anchored glycoconjugates of infective Trypanosoma cruzi trypomastigotes, the agent of Chagas disease (CD). These immunodominant epitopes elicit abundant (3-5% of circulating IgG), trypanolytic CD anti-a-Gal antibodies, yet their role on the parasite surface remains elusive. Here, affinity purification of macrophage extracts on the immobilized Galα1-3Galβ1-4GlcNAcβ (Galili’s aGal epitope) identified Galectin-3 (Gal-3) and the annexin A2-S100A10 heterotetramer (A2t) as candidate host-cell receptors, whose specificities were mapped against glycoconjugates and parasite-derived molecules. Gal-3 bound a-Gal-bearing neoglycoproteins (α-Gal-NGPs), the glycosphingolipid (GSL) iGb3 (Galα1-3Galβ1-4Glcβ1-1-Cer), trypomastigote-derived GPI-mucins (tGPI-mucins), and glycoinositolphospholipids (tGIPLs). α-Galactosidase abolished Gal-3 binding to trypomastigotes; epimastigote binding was reduced only by β-galactosidase. Conversely, A2t bound galactosylated GSLs in calcium-dependent manner, most strongly Gb4 (GalNAcβ1-3Galα1-4Galβ1-4Glcβ1-1-Cer), but not α-Gal-NGPs, and only two of 442 glycans on a printed array gave signals above background, indicating lipid-dependent recognition. A2t recognized the phospholipid-enriched fractions of both developmental stages equally, the tGIPL fraction of trypomastigotes only, and not tGPI-mucins. Antibody blockade of surface Anx2, S100A10, or Gal-3, competition with the soluble proteins, and RNA interference reduced macrophage infection by 29 to 50%, about 53%, and 42 to 59%, respectively. Terminal a-Gal epitopes on major trypomastigote GPI-anchored glycoconjugates therefore contribute to host-cell invasion, chiefly through Gal-3, whereas A2t engages a broader set of lipid-associated ligands; both contribute to a redundant entry repertoire rather than acting as obligate receptors. These interactions may offer targets for vaccine and chemotherapeutic development and serve as diagnostic and prognostic biomarkers in CD.

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Journal
Biochemical Journal
Published
2026-09-09
DOI
https://doi.org/10.1042/bcj20260011
Primary Topic
Trypanosoma species research and implications
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article
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article

α-Galactosyl residues on Trypanosoma cruzi trypomastigote glycoconjugates contribute to host-cell invasion via Galectin-3 and Annexin A2–S100A10 complex

Luciane Ganiko, Marina da Silva Ferreira, Priscila S. G. Farani, Luiz S. Silva et al.
Biochemical Journal
Trypanosoma species research and implications
article

α-Galactosyl residues on Trypanosoma cruzi trypomastigote glycoconjugates contribute to host-cell invasion via Galectin-3 and Annexin A2–S100A10 complex

Luciane Ganiko, Marina da Silva Ferreira, Priscila S. G. Farani, Luiz S. Silva, Alexandre F. Marques, Igor C. Almeida, Ernesto S. Nakayasu
article en

Abstract

Linear, nonreducing terminal a-galactopyranosyl (a-Gal) epitopes are displayed on the major surface glycosylphosphatidylinositol (GPI)-anchored glycoconjugates of infective Trypanosoma cruzi trypomastigotes, the agent of Chagas disease (CD). These immunodominant epitopes elicit abundant (3-5% of circulating IgG), trypanolytic CD anti-a-Gal antibodies, yet their role on the parasite surface remains elusive. Here, affinity purification of macrophage extracts on the immobilized Galα1-3Galβ1-4GlcNAcβ (Galili’s aGal epitope) identified Galectin-3 (Gal-3) and the annexin A2-S100A10 heterotetramer (A2t) as candidate host-cell receptors, whose specificities were mapped against glycoconjugates and parasite-derived molecules. Gal-3 bound a-Gal-bearing neoglycoproteins (α-Gal-NGPs), the glycosphingolipid (GSL) iGb3 (Galα1-3Galβ1-4Glcβ1-1-Cer), trypomastigote-derived GPI-mucins (tGPI-mucins), and glycoinositolphospholipids (tGIPLs). α-Galactosidase abolished Gal-3 binding to trypomastigotes; epimastigote binding was reduced only by β-galactosidase. Conversely, A2t bound galactosylated GSLs in calcium-dependent manner, most strongly Gb4 (GalNAcβ1-3Galα1-4Galβ1-4Glcβ1-1-Cer), but not α-Gal-NGPs, and only two of 442 glycans on a printed array gave signals above background, indicating lipid-dependent recognition. A2t recognized the phospholipid-enriched fractions of both developmental stages equally, the tGIPL fraction of trypomastigotes only, and not tGPI-mucins. Antibody blockade of surface Anx2, S100A10, or Gal-3, competition with the soluble proteins, and RNA interference reduced macrophage infection by 29 to 50%, about 53%, and 42 to 59%, respectively. Terminal a-Gal epitopes on major trypomastigote GPI-anchored glycoconjugates therefore contribute to host-cell invasion, chiefly through Gal-3, whereas A2t engages a broader set of lipid-associated ligands; both contribute to a redundant entry repertoire rather than acting as obligate receptors. These interactions may offer targets for vaccine and chemotherapeutic development and serve as diagnostic and prognostic biomarkers in CD.

Biochemical Journal
Pacific Northwest National Laboratory (US), The University of Texas at El Paso (US), University of Southern Mississippi (US), Universidade Federal de São Paulo (BR)
Openalex Percentile: Top 10%
Trypanosoma species research and implications
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