Heparan sulphate binding controls in vivo half-life of the HpARI protein family

Author:

Colomb Florent1,Jamwal Abhishek23,Ogunkanbi Adefunke14,Frangova Tania1,Savage Alice R1,Kelly Sarah1,Wright Gavin J4ORCID,Higgins Matthew K23ORCID,McSorley Henry J1ORCID

Affiliation:

1. Division of Cell Signalling and Immunology, School of Life Sciences, University of Dundee

2. Department of Biochemistry, University of Oxford

3. Kavli Institute of Nanoscience Discovery, Dorothy-Crowfoot Hodgkin Building, University of Oxford

4. Department of Biology, Hull York Medical School, York Biomedical Research Institute, University of York

Abstract

The parasitic nematode Heligmosomoides polygyrus bakeri secretes the HpARI family, which bind to IL-33, either suppressing (HpARI1 and HpARI2) or enhancing (HpARI3) responses to the cytokine. We previously showed that HpARI2 also bound to DNA via its first Complement Control Protein (CCP1) domain. Here, we find that HpARI1 can also bind DNA, while HpARI3 cannot. Through the production of HpARI2/HpARI3 CCP1 domain-swapped chimeras, DNA-binding ability can be transferred, and correlates with in vivo half-life of administered proteins. We found that HpARI1 and HpARI2 (but not HpARI3) also binds to the extracellular matrix component heparan sulphate (HS), and structural modelling showed a basic charged patch in the CCP1 domain of HpARI1 and HpARI2 (but not HpARI3) which could facilitate these interactions. Finally, a mutant of HpARI2 was produced which lacked DNA and HS binding, and was also shown to have a short half-life in vivo. Therefore, we propose that during infection the suppressive HpARI1 and HpARI2 proteins have long-lasting effects, and may be retained at the infection sites via DNA and/or extracellular matrix interactions. Conversely, HpARI3 may have a shorter half-life of effects where deposited, but could diffuse to distal sites.

Publisher

eLife Sciences Publications, Ltd

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