bioRxiv · 10.1101/2024.11.07.622398
Elucidating the Mechanism Underlying UBA7-UBE2L6 Disulfide Complex Formation
Abstract
We elucidate cryo-EM structure and formation of the ubiquitin-associated bovine UBA7*UBE2L6 disulfide complex, shedding light on a highly specific and evolutionarily conserved mechanism governing ISG15 conjugation, a pivotal process in the immune response. UBA7 displays a unique capacity to recognize UBE2L6, distinct from this latters homolog UBE2L3, highlighting the intricacies of cellular regulation. Inter-species interactions of the resulting complex further underscore its significance. We characterize three crucial factors that influence UBA7*UBE2L6 disulfide complex formation: (1) strong binding affinity and specificity; (2) conformational differences in the catalytic cysteine capping loop (CCL); and (3) increased thiolate/thiol ratios at catalytic cysteines. Modification of any of these factors profoundly impacts complex activation and the ISG15 transfer cascade. This redox-sensitive complex implies a link between oxidative stress and regulation of the immune response, highlighting a potential therapeutic target for modulating immune reactions arising from infections and inflammatory conditions.
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Chen, P.-T., Yeh, J.-Y., Weng, J.-H., Wu, K.-P.. 2024-11-08. Elucidating the Mechanism Underlying UBA7-UBE2L6 Disulfide Complex Formation. https://doi.org/10.1101/2024.11.07.622398
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