Identification of heparin-binding amino acid residues in antibody HS4C3 with the potential to design antibodies against heparan sulfate domains

Author:

Damen Lars A A12ORCID,Bui Thao P34ORCID,van Wessel Thierry12ORCID,Li Yong34ORCID,Straten Bart F12ORCID,Pampiermole Robin12ORCID,Daamen Willeke F12ORCID,Fernig David G34ORCID,van Kuppevelt Toin H12ORCID

Affiliation:

1. Department of Medical BioSciences , Radboud Institute for Medical Innovation, , PO Box 9101, Nijmegen 6500 HB , the Netherlands

2. Radboud University Medical Center , Radboud Institute for Medical Innovation, , PO Box 9101, Nijmegen 6500 HB , the Netherlands

3. Department of Biochemistry , Cell and Systems Biology, Institute of Systems, Molecular and Integrated Biology, , Crown Street, Liverpool L69 7ZB , United Kingdom

4. University of Liverpool , Cell and Systems Biology, Institute of Systems, Molecular and Integrated Biology, , Crown Street, Liverpool L69 7ZB , United Kingdom

Abstract

Abstract Heparan sulfate (HS) is a linear polysaccharide with high structural and functional diversity. Detection and localization of HS in tissues can be performed using single chain variable fragment (scFv) antibodies. Although several anti-HS antibodies recognizing different sulfation motifs have been identified, little is known about their interaction with HS. In this study the interaction between the scFv antibody HS4C3 and heparin was investigated. Heparin-binding lysine and arginine residues were identified using a protect and label methodology. Site-directed mutagenesis was applied to further identify critical heparin-binding lysine/arginine residues using immunohistochemical and biochemical assays. In addition, computational docking of a heparin tetrasaccharide towards a 3-D homology model of HS4C3 was applied to identify potential heparin-binding sites. Of the 12 lysine and 15 arginine residues within the HS4C3 antibody, 6 and 9, respectively, were identified as heparin-binding. Most of these residues are located within one of the complementarity determining regions (CDR) or in their proximity. All basic amino acid residues in the CDR3 region of the heavy chain were involved in binding. Computational docking showed a heparin tetrasaccharide close to these regions. Mutagenesis of heparin-binding residues reduced or altered reactivity towards HS and heparin. Identification of heparin-binding arginine and lysine residues in HS4C3 allows for better understanding of the interaction with HS and creates a framework to rationally design antibodies targeting specific HS motifs.

Funder

European Union

ArrestAD

H2020-FETOPEN

HS-SEQ

Government Scholarship for Training Lecturers for Universities in Vietnam

Publisher

Oxford University Press (OUP)

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