Skip to content
Licensed Unlicensed Requires Authentication Published by De Gruyter July 16, 2010

Effects of magnesium ions on recombinant human furin: selective activation of hydrolytic activity upon substrates derived from virus envelope glycoprotein

  • Mario A. Izidoro , Diego M. Assis , Vitor Oliveira , Jorge A.N. Santos , Maria A. Juliano , Iris Lindberg and Luiz Juliano
From the journal Biological Chemistry

Abstract

Here we report a detailed analysis of magnesium (Mg2+) ion effects on furin hydrolysis of fluorescent resonance energy transfer decapeptide substrates derived from canonical R-X-K/R-R furin cleavage motifs within certain viral envelope glycoproteins and eukaryotic proproteins. Using virus-derived sequences a selective activation of furin by Mg2+ ions was observed as a result of cooperativity between furin subsites. Furin hydrolysis of the peptides Abz-SRRHKR↓FAGV-Q-EDDnp (from measles virus fusion protein Fo) and Abz-RERRRKKR↓GLFG-Q-EDDnp (from Asian avian influenza A, H5N1) was activated between 60- and 80-fold by MgCl2. It appears that virus envelope glycoprotein mutations have been selected to increase their susceptibility to furin within cells, a location where Mg2+ is present in adequate concentrations for activation. Both the pH profile of furin and its intrinsic fluorescence were modified by Mg2+ ions, which bind to furin with a Kd value of 1.1 mm.


Corresponding author

Received: 2010-3-20
Accepted: 2010-5-31
Published Online: 2010-07-16
Published in Print: 2010-09-01

©2010 by Walter de Gruyter Berlin New York

Downloaded on 25.4.2024 from https://www.degruyter.com/document/doi/10.1515/bc.2010.114/html
Scroll to top button