bioRxiv · 10.64898/2026.02.23.707421
Distinct nanoscale membrane organizations of mucins and trans-sialidases in Trypanosoma cruzi
Abstract
Trypanosoma cruzi, the causative agent of Chagas disease, relies on surface sialylation to evade host immunity and invade cells. This process is mediated by trans-sialidases (TS) and mucins, an enzyme-substrate pair anchored to distinct lipid environments. Yet, how these molecules are organized at the nanoscale in the parasites membrane remains unknown. Using dual-color super-resolution microscopy, we show that [~]60% of mucins and TS are segregated into nanoclusters ([~]100 nm) that rarely contact each other, distributed with a non-random separation distance, indicating that these abundant domains follow a specific order in the plasma membrane and are unlikely to serve as primary sites of sialylation. In contrast, the [~]40% fraction of non-clustered mucins and TS exhibits significantly shorter-than-random separation distances and appear ordered as in a shared fibrillar network. Additionally, we describe a distinct structural organization within these domains: mucins --residents of detergent-resistant domains (DRDs)--organize into high-molecular-weight complexes, whereas TS (which are excluded from DRDs) do not. This reveals an additional layer of membrane asymmetry and suggests a potential mechanism for domain-specific protein localization. Together, these findings uncover major principles of T. cruzi surface organization, with important implications for the regulation of host-parasite interactions.
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Escalante, G., Parada-Puig, R., Lopez, L. F., Szalai, A. M., Camara, M. d. l. M., Masullo, L. A., Mucci, J., Campetella, O. E., Stefani, F. D.. 2026-02-23. Distinct nanoscale membrane organizations of mucins and trans-sialidases in Trypanosoma cruzi. https://doi.org/10.64898/2026.02.23.707421
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