Antibodies binding the ADAM10 substrate recognition domain inhibit Eph function Journal Article


Authors: Atapattu, L.; Saha, N.; Llerena, C.; Vail, M. E.; Scott, A. M.; Nikolov, D. B.; Lackmann, M.; Janes, P. W.
Article Title: Antibodies binding the ADAM10 substrate recognition domain inhibit Eph function
Abstract: The ADAM10 transmembrane metalloprotease cleaves a variety of cell surface proteins that are important in disease, including ligands for receptor tyrosine kinases of the erbB and Eph families. ADAM10-mediated cleavage of ephrins, the ligands for Eph receptors, is suggested to control Eph/ephrin-mediated cell-cell adhesion and segregation, important during normal developmental processes, and implicated in tumour neo-angiogenesis and metastasis. We previously identified a substrate-binding pocket in the ADAM10 C domain that binds the EphA/ephrin-A complex thereby regulating ephrin cleavage. We have now generated monoclonal antibodies specifically recognising this region of ADAM10, which inhibit ephrin cleavage and Eph/ephrin-mediated cell function, including ephrin-induced Eph receptor internalisation, phosphorylation and Eph-mediated cell segregation. Our studies confirm the important role of ADAM10 in cell-cell interactions mediated by both A- and B-type Eph receptors, and suggest antibodies against the ADAM10 substrate-recognition pocket as promising therapeutic agents, acting by inhibiting cleavage of ephrins and potentially other ADAM10 substrates. © 2012. Published by The Company of Biologists Ltd.
Keywords: controlled study; protein expression; protein phosphorylation; unclassified drug; human cell; protein domain; protein function; protein localization; cell division; cell function; protein binding; enzyme activity; enzyme substrate; monoclonal antibody; molecular recognition; membrane protein; antibody specificity; cell interaction; antibody; protein cleavage; internalization; ephrin; mediator; adam10 endopeptidase; ephrin receptor; eph receptor; cell-cell adhesion; adam metalloprotease; ephrin cleavage; ephrin a receptor; ephrin b receptor
Journal Title: Journal of Cell Science
Volume: 125
Issue: 24
ISSN: 0021-9533
Publisher: Company of Biologists  
Date Published: 2012-12-15
Start Page: 6084
End Page: 6093
Language: English
PROVIDER: scopus
DOI/URL:
Notes: --- - "Export Date: 24 April 2013" - "CODEN: JNCSA" - ":doi 10.1242/jcs.112631" - "Source: Scopus"