Transfection of mammalian cells with connexins and measurement of voltage sensitivity of their gap junctions

被引:0
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作者
Cristiane del Corsso
Miduturu Srinivas
Marcia Urban-Maldonado
Alonso P Moreno
Alfredo G Fort
Glenn I Fishman
David C Spray
机构
[1] Albert Einstein College of Medicine,The Dominick P. Purpura Department of Neuroscience
[2] 1410 Pelham Parkway South,Department of Medicine
[3] College of Optometry,Department of Cardiology
[4] State University of New York (SUNY),undefined
[5] University of Utah Cardiovascular Research and Training Institute,undefined
[6] NYU Medical Center,undefined
[7] One Gustave L. Levy Place,undefined
[8] Annenberg Building,undefined
[9] Room 24-60,undefined
来源
Nature Protocols | 2006年 / 1卷
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摘要
Vertebrate gap junction channels are formed by a family of more than 20 connexin proteins. These gap junction proteins are expressed with overlapping cellular and tissue specificity, and coding region mutations can cause human hereditary diseases. Here we present a summary of what has been learned from voltage clamp studies performed on cell pairs either endogenously expressing gap junctions or in which connexins are exogenously expressed. General protocols presented here are currently used to transfect mammalian cells with connexins and to study the biophysical properties of the heterologously expressed connexin channels. Transient transfection is accomplished overnight with maximal expression occurring at about 36 h; stable transfectants normally can be generated within three or four weeks through colony selection. Electrophysiological protocols are presented for analysis of voltage dependence and single-channel conductance of gap junction channels as well as for studies of chemical gating of these channels.
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页码:1799 / 1809
页数:10
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