Engineered coagulation factor VIII with enhanced secretion and coagulation potential for hemophilia A gene therapy

Y Yuji Kashiwakura Y Yuto Nakajima (3Department of Pediatrics, Nara Medical University Hospital, Kashihara, Japan) K Kio Horinaka T Tiago J. S. Lopes (5Nezu Life Sciences, Heidelberg, Germany) Y Yuma Furuta (6Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Japan) Y Yuki Yamaguchi N Nemekhbayar Baatartsogt (1Department of Biochemistry, Jichi Medical University School of Medicine, Tochigi, Japan) M Morisada Hayakawa (1Department of Biochemistry, Jichi Medical University School of Medicine, Tochigi, Japan) Y Yuko Katakai (7Corporation for Production and Research of Laboratory Primates, Tsukuba, Japan) S Susumu Uchiyama O Osamu Nureki K Keiji Nogami T Tsukasa Ohmori

Abstract

Abstract The major challenges of gene therapy for hemophilia A using adeno-associated virus (AAV) vectors are reducing vector doses and the long-term maintenance of stable factor VIII (FVIII). In this study, we developed engineered human B-domain–deleted FVIIIs (FVIIISQ) with enhanced secretion and coagulation potential. Intracellular accumulation was markedly reduced in some engineered FVIIISQ, resulting in reduced unfolded protein responses. The administration of AAV vectors carrying engineered FVIIISQ to hemophilia A mice resulted in ∼8-fold higher FVIII activity and 4-fold higher FVIII antigen levels compared with wild-type FVIIISQ administration. The specific FVIII activity of the engineered FVIIISQ was 3.6 times higher than that of the wild-type FVIIISQ, and its binding to activated coagulation factor IX was significantly enhanced, which is supported by the structural analysis. In macaques, the administration of AAV5 vector carrying the engineered FVIIISQ without CpG sequences resulted in a supraphysiological increase in plasma FVIII activity at a dose one-thirtieth that of valoctocogene roxaparvovec (2 × 1012 vector genome per kg). The engineered FVIIISQ may thus provide stable, long-term therapeutic efficacy in AAV-mediated hemophilia A gene therapy even at low doses.

Article Details

Journal Blood
Volume / Issue Vol. 147, Issue 4
Published January 22, 2026
Pages 402-415
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (13)

Y

Yuji Kashiwakura

Y

Yuto Nakajima

3Department of Pediatrics, Nara Medical University Hospital, Kashihara, Japan

K

Kio Horinaka

T

Tiago J. S. Lopes

5Nezu Life Sciences, Heidelberg, Germany

Y

Yuma Furuta

6Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Japan

Y

Yuki Yamaguchi

N

Nemekhbayar Baatartsogt

1Department of Biochemistry, Jichi Medical University School of Medicine, Tochigi, Japan

M

Morisada Hayakawa

1Department of Biochemistry, Jichi Medical University School of Medicine, Tochigi, Japan

Y

Yuko Katakai

7Corporation for Production and Research of Laboratory Primates, Tsukuba, Japan

S

Susumu Uchiyama

O

Osamu Nureki

K

Keiji Nogami

T

Tsukasa Ohmori