ADAM10 sheddase activation is controlled by cell membrane asymmetry

Author:

Bleibaum Florian1ORCID,Sommer Anselm1,Veit Martin1,Rabe Björn2,Andrä Jörg3,Kunzelmann Karl4,Nehls Christian5ORCID,Correa Wilmar5,Gutsmann Thomas5,Grötzinger Joachim2,Bhakdi Sucharit1,Reiss Karina1

Affiliation:

1. Department of Dermatology, University of Kiel, Kiel, Germany

2. Institute of Biochemistry, University of Kiel, Olshausenstraße 40, Kiel, Germany

3. Hamburg University of Applied Science, Ulmenliet 20, Hamburg, Germany

4. Physiological Institute, University of Regensburg, Universitätsstraße 31, Regensburg, Germany

5. Forschungszentrum Borstel, Leibniz-Zentrum für Medizin und Biowissenschaften, Parkallee 10, Borstel, Germany

Abstract

Abstract Dysregulation of the disintegrin-metalloproteinase ADAM10 may contribute to the development of diseases including tumorigenesis and Alzheimer’s disease. The mechanisms underlying ADAM10 sheddase activation are incompletely understood. Here, we show that transient exposure of the negatively charged phospholipid phosphatidylserine (PS) is necessarily required. The soluble PS headgroup was found to act as competitive inhibitor of substrate cleavage. Overexpression of the Ca2+-dependent phospholipid scramblase Anoctamin-6 (ANO6) led to increased PS externalization and substrate release. Transfection with a constitutively active form of ANO6 resulted in maximum sheddase activity in the absence of any stimulus. Calcium-dependent ADAM10 activation could not be induced in lymphocytes of patients with Scott syndrome harbouring a missense mutation in ANO6. A putative PS-binding motif was identified in the conserved stalk region. Replacement of this motif resulted in strong reduction of sheddase activity. In conjunction with the recently described 3D structure of the ADAM10 extracellular domain, a model is advanced to explain how surface-exposed PS triggers ADAM10 sheddase function.

Funder

Deutsche Forschungsgemeinschaft

Germany’s Excellence Strategy

Cluster of Excellence ‘Inflammation at Interfaces’ and ‘Future Ocean’

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Genetics,Molecular Biology,General Medicine

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