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A consensus segment in the M2 domain of the hP2X7 receptor shows ion channel activity in planar lipid bilayers and in biological membranes
Authors:Cristina Alves Magalhães de Souza  Pedro Celso Nogueira Teixeira  Robson Xavier Faria  Oxana Krylova  Peter Pohl  Luiz Anastacio Alves
Affiliation:1. Oswaldo Cruz Foundation, Oswaldo Cruz Institute, Laboratory of Cellular Communication, Av. Brazil 4365, 21045-900, Rio de Janeiro, Brazil;2. Leibniz Institute for Molecular Pharmacology, Berlin, Germany;3. Institut für Biophysik, Johannes Kepler Universität, Altenberger Str. 69, A-4040, Linz, Austria
Abstract:The P2X7 receptor (P2X7R) is an ATP-gated, cation-selective channel permeable to Na+, K+ and Ca2+. This channel has also been associated with the opening of a non-selective pore that allows the flow of large organic ions. However, the biophysical properties of the P2X7R have yet to be characterized unequivocally. We investigated a region named ADSEG, which is conserved among all subtypes of P2X receptors (P2XRs). It is located in the M2 domain of hP2X7R, which aligns with the H5 signature sequence of potassium channels. We investigated the channel forming ability of ADSEG in artificial planar lipid bilayers and in biological membranes using the cell-attached patch-clamp techniques. ADSEG forms channels, which exhibit a preference for cations. They are voltage independent and show long-term stability in planar lipid bilayers as well as under patch-clamping conditions. The open probability of the ADSEG was similar to that of native P2X7R. The conserved part of the M2 domain of P2X7R forms ionic channels in planar lipid bilayers and in biological membranes. Its electrophysiological characteristics are similar to those of the whole receptor. Conserved and hydrophobic part of the M2 domain forms ion channels.
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