The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.

Gap junction (GJ) channels provide direct passage for ions and small molecules to be exchanged between neighbouring cells and are crucial for many physiological processes. GJ channels can be gated by transjunctional voltage (known as Vj-gating) and display a wide range of unitary channel conductance...

Full description

Bibliographic Details
Main Authors: Xiaoling Tong, Hiroshi Aoyama, Swathy Sudhakar, Honghong Chen, Brian H Shilton, Donglin Bai
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4666595?pdf=render
id doaj-ad779fba1bad41ef8f7b2eb43d0f3b4e
record_format Article
spelling doaj-ad779fba1bad41ef8f7b2eb43d0f3b4e2020-11-24T21:34:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011012e014387610.1371/journal.pone.0143876The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.Xiaoling TongHiroshi AoyamaSwathy SudhakarHonghong ChenBrian H ShiltonDonglin BaiGap junction (GJ) channels provide direct passage for ions and small molecules to be exchanged between neighbouring cells and are crucial for many physiological processes. GJ channels can be gated by transjunctional voltage (known as Vj-gating) and display a wide range of unitary channel conductance (γj), yet the domains responsible for Vj-gating and γj are not fully clear. The first extracellular domain (E1) of several connexins has been shown to line part of their GJ channel pore and play important roles in Vj-gating properties and/or ion permeation selectivity. To test roles of the E1 of Cx50 GJ channels, we generated a chimera, Cx50Cx36E1, where the E1 domain of Cx50 was replaced with that of Cx36, a connexin showing quite distinct Vj-gating and γj from those of Cx50. Detailed characterizations of the chimera and three point mutants in E1 revealed that, although the E1 domain is important in determining γj, the E1 domain of Cx36 is able to effectively function within the context of the Cx50 channel with minor changes in Vj-gating properties, indicating that sequence differences between the E1 domains in Cx36 and Cx50 cannot account for their drastic differences in Vj-gating and γj. Our homology models of the chimera and the E1 mutants revealed that electrostatic properties of the pore-lining residues and their contribution to the electric field in the pore are important factors for the rate of ion permeation of Cx50 and possibly other GJ channels.http://europepmc.org/articles/PMC4666595?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoling Tong
Hiroshi Aoyama
Swathy Sudhakar
Honghong Chen
Brian H Shilton
Donglin Bai
spellingShingle Xiaoling Tong
Hiroshi Aoyama
Swathy Sudhakar
Honghong Chen
Brian H Shilton
Donglin Bai
The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
PLoS ONE
author_facet Xiaoling Tong
Hiroshi Aoyama
Swathy Sudhakar
Honghong Chen
Brian H Shilton
Donglin Bai
author_sort Xiaoling Tong
title The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
title_short The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
title_full The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
title_fullStr The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
title_full_unstemmed The First Extracellular Domain Plays an Important Role in Unitary Channel Conductance of Cx50 Gap Junction Channels.
title_sort first extracellular domain plays an important role in unitary channel conductance of cx50 gap junction channels.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Gap junction (GJ) channels provide direct passage for ions and small molecules to be exchanged between neighbouring cells and are crucial for many physiological processes. GJ channels can be gated by transjunctional voltage (known as Vj-gating) and display a wide range of unitary channel conductance (γj), yet the domains responsible for Vj-gating and γj are not fully clear. The first extracellular domain (E1) of several connexins has been shown to line part of their GJ channel pore and play important roles in Vj-gating properties and/or ion permeation selectivity. To test roles of the E1 of Cx50 GJ channels, we generated a chimera, Cx50Cx36E1, where the E1 domain of Cx50 was replaced with that of Cx36, a connexin showing quite distinct Vj-gating and γj from those of Cx50. Detailed characterizations of the chimera and three point mutants in E1 revealed that, although the E1 domain is important in determining γj, the E1 domain of Cx36 is able to effectively function within the context of the Cx50 channel with minor changes in Vj-gating properties, indicating that sequence differences between the E1 domains in Cx36 and Cx50 cannot account for their drastic differences in Vj-gating and γj. Our homology models of the chimera and the E1 mutants revealed that electrostatic properties of the pore-lining residues and their contribution to the electric field in the pore are important factors for the rate of ion permeation of Cx50 and possibly other GJ channels.
url http://europepmc.org/articles/PMC4666595?pdf=render
work_keys_str_mv AT xiaolingtong thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT hiroshiaoyama thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT swathysudhakar thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT honghongchen thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT brianhshilton thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT donglinbai thefirstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT xiaolingtong firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT hiroshiaoyama firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT swathysudhakar firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT honghongchen firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT brianhshilton firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
AT donglinbai firstextracellulardomainplaysanimportantroleinunitarychannelconductanceofcx50gapjunctionchannels
_version_ 1725948022180806656