bioRxiv · 10.64898/2026.09.01.748362
Proteome-wide crosslinking mass spectrometry reveals novel components of essential complexes in Toxoplasma
Abstract
Protein-protein interactions underpin nearly all cellular processes, yet systematic definition of these networks remains limited outside a few model organisms. As a result, the architectures of essential complexes in many divergent lineages remain poorly characterized. Here we developed a high-coverage crosslinking mass spectrometry framework to map the proteome-wide interactome of the model apicomplexan parasite Toxoplasma gondii. From 29,624 crosslinked peptide pairs, we resolved a network of 2,859 protein-protein interactions that we integrated with structural modeling to resolve interaction interfaces. We identified and validated previously unrecognized components of essential protein complexes, including a structurally distinct ATP synthase subcomplex containing a highly divergent, apicomplexan-specific subunit essential for parasite fitness. Beyond revealing unexpected diversification of core mitochondrial machinery, these findings provide a general strategy to define the molecular architecture of divergent organisms and represent a foundational resource for hypothesis generation, structural inference, and discovery of lineage-specific vulnerabilities in pathogen biology.
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Butterworth, S., Gin, A. L., Shikha, S., Tengganu, I., Rush, J., Duraisingh, T., Sodeinde, V., Lemgruber, L., Schulte, F., Hu, K., Sheiner, L., Ovchinnikov, S., Lourido, S.. 2026-09-03. Proteome-wide crosslinking mass spectrometry reveals novel components of essential complexes in Toxoplasma. https://doi.org/10.64898/2026.09.01.748362
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