Prothrombotic antibodies targeting the spike protein's receptor-binding domain in severe COVID-19
Abstract
Abstract Thromboembolic complication is common in severe coronavirus disease 2019 (COVID-19), leading to an investigation into the presence of prothrombotic antibodies akin to those found in heparin-induced thrombocytopenia (HIT). In a study of samples from 130 hospitalized patients, collected 3.6 days after COVID-19 diagnosis, 80% had immunoglobulin G (IgG) antibodies recognizing complexes of heparin and platelet factor 4 (PF4; PF4/H), and 41% had antibodies inducing PF4-dependent P-selectin expression in CpG oligodeoxynucleotide–treated normal platelets. Unlike HIT, both PF4/H-reactive and platelet-activating antibodies were found in patients with COVID-19 regardless of recent heparin exposure. Notably, PF4/H-reactive IgG antibodies correlated with those targeting the receptor-binding domain (RBD) of the severe acute respiratory syndrome coronavirus 2 spike protein. Moreover, introducing exogenous RBD to or removing RBD-reactive IgG from COVID-19 plasma or IgG purified from COVID-19 plasma significantly reduced their ability to activate platelets. RBD-specific antibodies capable of platelet activation were cloned from peripheral blood B cells of patients with COVID-19. These antibodies possessed sequence motifs in the heavy-chain complementarity-determining region 3 (HCDR3), resembling those identified in pathogenic HIT antibodies. Furthermore, IgG+ B cells having these HCDR3 signatures were markedly expanded in patients with severe COVID-19. Importantly, platelet-activating antibodies present in patients with COVID-19 were associated with a specific elevation of platelet α-granule proteins in the plasma and showed a positive correlation with markers for inflammation and tissue damage, suggesting a functionality of these antibodies in patients. The demonstration of functional and structural similarities between certain RBD-specific antibodies in patients with COVID-19 and pathogenic antibodies typical of HIT suggests a novel mechanism by which RBD-specific antibodies might contribute to thrombosis in COVID-19.
Article Details
Authors (25)
Wen Zhu
Yongwei Zheng
Guangzhou Bio-gene Technology Co., Ltd, Guangzhou, China
Mei Yu
Nathan Witman
1Versiti Blood Research Institute, Milwaukee, United States
Lu Zhou
School of Pharmacy
Jianhui Wei
Yongguang Zhang
International Institute for Earth System Sciences, Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application, Nanjing University
Paytsar Topchyan
1Versiti Blood Research Institute, Milwaukee, WI
Christine Nguyen
David Wang
Department of Chemistry
Rae Janecke
1Versiti Blood Research Institute, Milwaukee, WI
Anand Padmanabhan
Mayo Clinic, Rochester, MN
Lisa Baumann Kreuziger
23Versiti, Waukesha, United States
Gilbert C. White
1Versiti Blood Research Institute, Milwaukee, WI
Parameswaran Hari
2Medical College of Wisconsin, Milwaukee, United States
Tongjun Gu
Alexander T. Fields
7Department of Surgery, University of California San Francisco, San Francisco, CA
Lucy Z. Kornblith
7Department of Surgery, University of California San Francisco, San Francisco, CA
Richard Aster
1Versiti Blood Research Institute, Milwaukee, WI
Jieqing Zhu
1Versiti Blood Research Institute, Versiti Blood Center of Wisconsin, Milwaukee, WI
Weiguo Cui
Department of Pathology, Northwestern University, Feinberg School of Medicine
Shawn Jobe
4Michigan University, East Lansing, United States
Mary Beth Graham
5Medical College of Wisconsin, Department of Medicine, Milwaukee, United States
Demin Wang
Renren Wen
1Versiti Blood Research Institute, Milwaukee, WI