9QRV
Crystal Structure of an anti-VWF CK Domain Fab in Complex with the C-Terminal CK Domain of Cynomolgus Monkey von Willebrand Factor.
Summary for 9QRV
| Entry DOI | 10.2210/pdb9qrv/pdb |
| Descriptor | von Willebrand factor, VH-CH1, Kappa light chain, ... (8 entities in total) |
| Functional Keywords | von willebrand factor, ck domain, fab, von willebrand disease, blood clotting |
| Biological source | Macaca fascicularis (crab-eating macaque) More |
| Total number of polymer chains | 3 |
| Total formula weight | 61252.77 |
| Authors | Bak-Thomsen, T.,Hager, M.,Carnbring Deemand, A.,Gluver Norgaard, H.,Kempf-Amkaer, L.,Anthonsen, A.,Nielsen, R.,Naretto, A.,Kelpsas, V.,Sabljic, I.,Rose, N.,Ostergaard, H.,Gandhi, P.,Walse, B. (deposition date: 2025-04-04, release date: 2026-02-11, Last modification date: 2026-08-26) |
| Primary citation | Hager, M.,Zivkovic, M.,Gandhi, P.S.,Rasmussen, C.,Bonvoisin, C.,Harrison, R.A.,Poulsen, E.,Huskens, D.,Roest, M.,Ferrara, F.,Naretto, A.,Renaud, L.,Olsen, O.H.,Eskesen, N.O.,Holten-Andersen, L.,Malladi, R.,Rea, C.J.,Sorensen, B.,Urbanus, R.T.,Ostergaard, H. HMB-002: a monovalent antibody that elevates circulating VWF and FVIII levels for treatment of von Willebrand disease. Blood Adv, 10:2551-2562, 2026 Cited by PubMed Abstract: Von Willebrand disease (VWD) is the most common inherited bleeding disorder, resulting from deficiency or dysfunction of von Willebrand factor (VWF), a protein crucial for hemostasis. Current prophylactic options present significant limitations including poor tolerability, short half-life, or the requirement for frequent IV administration. Here, we report HMB-002, a human Fc-silenced monovalent IgG4 antibody designed to provide convenient subcutaneous prophylaxis by binding and elevating levels of endogenous VWF. Binding studies and X-ray crystallography revealed that HMB-002 binds VWF with subnanomolar affinity at a well-defined epitope in the C-terminal cysteine-knot (CK) domain, which is spatially distant from regions mediating VWF's hemostatic functions. Consistent with structural analyses, in vitro functional studies demonstrated that HMB-002-bound VWF retained its ability to bind factor VIII (FVIII), platelet GPIbα, and collagen, as well as susceptibility to proteolytic regulation by ADAMTS13. In cynomolgus monkeys, IV and subcutaneous administration of HMB-002 resulted in time-dependent accumulation of endogenous VWF and FVIII antigen, reaching about twofold elevation with a proportional increase in VWF activity and with retained VWF multimer distribution. HMB-002 also extended the half-life of coadministered recombinant VWF by approximately threefold. Using a surrogate antibody with overlapping epitope specificity, similar VWF accumulation was observed in a type 1 VWD mouse model with improved hemostasis following vascular challenge. By elevating levels of circulating VWF and FVIII, HMB-002 represents a potential subcutaneous prophylactic treatment approach to mitigate the hemostatic impairment in VWD and address current limitations in disease management. PubMed: 41569789DOI: 10.1182/bloodadvances.2025018516 PDB entries with the same primary citation |
| Experimental method | X-RAY DIFFRACTION (2.5 Å) |
Structure validation
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