Clusterin maintains hemostatic equilibrium by stabilizing VWF multimers in plasma

Z Ziqi Qiao (1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China) Y Yang Cao J Jingge Su (2School of Basic Medicine and Clinical Pharmacy, China Pharmaceutical University, Nanjing, China) S Shan Lu G Guoqin Wei (1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China) S Shengyu Jin Q Qiulan Ding (5Department of Laboratory Medicine, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China) Y Yanjie Sun Y Yingqing Huo (1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China) M Mengqiu Dong (3National Institute of Biological Sciences, Beijing, China) J Jincai Luo (1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China) P Pin Li (Department of Dermatology, Shandong Provincial Hospital, Shandong University)

Abstract

Abstract The coagulation-anticoagulation balance is tightly regulated by endothelial-derived factors, which have not been clearly defined. Here, we report that clusterin, a component of Weibel-Palade bodies (WPBs), plays a crucial role in maintaining hemostatic equilibrium by stabilizing von Willebrand factor (VWF) multimers in plasma. Clusterin was identified by proteomic analysis as a component of the endothelial secretome under both chemical and physical conditions and demonstrated as a WPB component via immunostaining and cotransfection assays. Notably, a significant reduction of clusterin protein level was observed in plasma from patients with type 2A von Willebrand disease. Furthermore, loss of clusterin in mice led to hemorrhagic diathesis and impaired thrombosis, accompanied by reduced high molecular weight (HMW) VWF levels. These defects were rescued by exogenous clusterin administration, underscoring its therapeutic potential. Mechanistically, clusterin binds to the D4N domain of VWF, which competitively inhibits ADAMTS13-mediated proteolysis under shear stress, and thereby preserves HMW VWF multimers essential for hemostasis. This study redefines WPBs as hubs for regulatory proteins and establishes clusterin as a key modulator of VWF multimer quality, offering a paradigm shift in targeting coagulation dysfunction through multimer stabilization rather than protein replacement. Our findings bridge a critical gap in understanding endothelial-driven coagulation homeostasis and suggest a potential therapeutic strategy targeting VWF multimer quality for bleeding disorder diseases.

Article Details

Journal Blood
Volume / Issue Vol. 147, Issue 22
Published May 28, 2026
Pages 2682-2696
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (12)

Z

Ziqi Qiao

1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China

Y

Yang Cao

J

Jingge Su

2School of Basic Medicine and Clinical Pharmacy, China Pharmaceutical University, Nanjing, China

S

Shan Lu

G

Guoqin Wei

1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China

S

Shengyu Jin

Q

Qiulan Ding

5Department of Laboratory Medicine, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China

Y

Yanjie Sun

Y

Yingqing Huo

1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China

M

Mengqiu Dong

3National Institute of Biological Sciences, Beijing, China

J

Jincai Luo

1Laboratory of Vascular Biology, Institute of Molecular Medicine, College of Future Technology, Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Peking University, Beijing, China

P

Pin Li

Department of Dermatology, Shandong Provincial Hospital, Shandong University