bioRxiv · 10.1101/2024.07.30.605874
The structural basis for the selective antagonism of soluble TNF-alpha by shark variable new antigen receptors
Abstract
The pro-inflammatory cytokine tumor necrosis factor-alpha (TNF)- is synthesized as transmembrane TNF- (tmTNF-) where proteolytic processing releases soluble TNF- (sTNF-). tmTNF- can act as either a ligand by activating TNF receptors, or a receptor that transmits outside-to-inside signals (reverse signalling) after binding to native receptors. All TNF- therapies bind tmTNF- and induce reverse signalling which can result in immunosuppression leading to infection. We present crystal structures of two anti-TNF- Variable New Antigen Receptors (VNAR) in complex with sTNF- via two distinct epitopes. The VNAR-D1 recognized an epitope that selectively engaged sTNF- while VNAR-C4 bound an epitope that overlapped with other biologic therapies. In activated CD4+ T cells, our VNARs did not bind tmTNF- in contrast to commercially available therapies that demonstrated induction of reverse signalling. Our findings suggest that neutralisation through a unique mechanism may lead to anti-TNF- agents with an improved safety profile that will benefit high-risk patients.
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Ubah, O. C., Lake, E. W., Priyanka, S., Shi, K., Moeller, N. H., Porter, A. J., Aihara, H., LeBeau, A. M., Barelle, C. J.. 2024-07-30. The structural basis for the selective antagonism of soluble TNF-alpha by shark variable new antigen receptors. https://doi.org/10.1101/2024.07.30.605874
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