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1. Translational readthrough at F8 nonsense variants in the factor VIII B domain contributes to residual expression and lowers inhibitor association

2. An Altered Splicing Registry Explains the Differential ExSpeU1-Mediated Rescue of Splicing Mutations Causing Haemophilia A

3. Transposon-mediated Generation of Cellular and Mouse Models of Splicing Mutations to Assess the Efficacy of snRNA-based Therapeutics

4. Fusion of engineered albumin with factor IX Padua extends half‐life and improves coagulant activity

5. Translational readthrough at

6. Translational readthrough ofGLAnonsense mutations suggests dominant-negative effects exerted by the interaction of wild-type and missense variants

7. An advanced method for the small-scale production of high-quality minicircle DNA

8. An Exon-Specific Small Nuclear U1 RNA (ExSpeU1) Improves Hepatic OTC Expression in a Splicing-Defective spf/ash Mouse Model of Ornithine Transcarbamylase Deficiency

9. A Compensatory U1snRNA Partially Rescues FAH Splicing and Protein Expression in a Splicing-Defective Mouse Model of Tyrosinemia Type I

10. An engineered human albumin enhances half-life and transmucosal delivery when fused to protein-based biologics

11. Noncanonical type 2B von Willebrand disease associated with mutations in the VWF D'D3 and D4 domains

12. An Altered Splicing Registry Explains the Differential ExSpeU1-Mediated Rescue of Splicing Mutations Causing Haemophilia A

13. The carboxyl-terminal region of human coagulation factor X as a natural linker for fusion strategies

14. Akt-mediated phosphorylation of MICU1 regulates mitochondrial Ca

15. The chaperone-like sodium phenylbutyrate improves factor IX intracellular trafficking and activity impaired by the frequent p.R294Q mutation

16. Secretion of wild-type factor IX upon readthrough over F9 pre-peptide nonsense mutations causing hemophilia B

17. Transposon-mediated Generation of Cellular and Mouse Models of Splicing Mutations to Assess the Efficacy of snRNA-based Therapeutics

18. Specific factor IX mRNA and protein features favor drug-induced readthrough over recurrent nonsense mutations

19. Differential functional readthrough over homozygous nonsense mutations contributes to the bleeding phenotype in coagulation factor VII deficiency

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