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1. Biophysical characterization of blood coagulation factor VIII binding to lipid nanodiscs that mimic activated platelet surfaces.

2. Blunting specific T-dependent antibody responses with engineered "decoy" B cells.

3. Structural basis for inhibition of coagulation factor VIII reveals a shared antigenic hotspot on the C1 domain.

4. Stable binding to phosphatidylserine-containing membranes requires conserved arginine residues in tandem C domains of blood coagulation factor VIII.

5. Structural insights into blood coagulation factor VIII: Procoagulant complexes, membrane binding, and antibody inhibition.

6. Illustrated State-of-the-Art Capsules of the ISTH 2020 Congress.

7. Structure of Blood Coagulation Factor VIII in Complex With an Anti-C2 Domain Non-Classical, Pathogenic Antibody Inhibitor.

8. The 3.2 Å structure of a bioengineered variant of blood coagulation factor VIII indicates two conformations of the C2 domain.

9. Ribosomal protein L7/L12 is required for GTPase translation factors EF-G, RF3, and IF2 to bind in their GTP state to 70S ribosomes.

10. Structure of the factor VIII C2 domain in a ternary complex with 2 inhibitor antibodies reveals classical and nonclassical epitopes.

11. Characterization and solution structure of the factor VIII C2 domain in a ternary complex with classical and non-classical inhibitor antibodies.

12. Optimization of factor VIII replacement therapy: can structural studies help in evading antibody inhibitors?

13. Structure of a factor VIII C2 domain-immunoglobulin G4kappa Fab complex: identification of an inhibitory antibody epitope on the surface of factor VIII.

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