The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.

Connexins (Cx) are the subunits of gap junctions, membraneous protein channels that permit the exchange of small molecules between adjacent cells. Cx43 is required for cell proliferation in the zebrafish caudal fin. Previously, we found that a Cx43-like connexin, cx40.8, is co-expressed with cx43 in...

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Main Authors: Sarah V Gerhart, Diane M Eble, R Michael Burger, Stefan N Oline, Ana Vacaru, Kirsten C Sadler, Rebecca Jefferis, M Kathryn Iovine
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3275562?pdf=render
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spelling doaj-0a672a21460040abae76a483729614a12020-11-24T22:16:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0172e3136410.1371/journal.pone.0031364The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.Sarah V GerhartDiane M EbleR Michael BurgerStefan N OlineAna VacaruKirsten C SadlerRebecca JefferisM Kathryn IovineConnexins (Cx) are the subunits of gap junctions, membraneous protein channels that permit the exchange of small molecules between adjacent cells. Cx43 is required for cell proliferation in the zebrafish caudal fin. Previously, we found that a Cx43-like connexin, cx40.8, is co-expressed with cx43 in the population of proliferating cells during fin regeneration. Here we demonstrate that Cx40.8 exhibits novel differential subcellular localization in vivo, depending on the growth status of the fin. During fin ontogeny, Cx40.8 is found at the plasma membrane, but Cx40.8 is retained in the Golgi apparatus during regeneration. We next identified a 30 amino acid domain of Cx40.8 responsible for its dynamic localization. One possible explanation for the differential localization is that Cx40.8 contributes to the regulation of Cx43 in vivo, perhaps modifying channel activity during ontogenetic growth. However, we find that the voltage-gating properties of Cx40.8 are similar to Cx43. Together our findings reveal that Cx40.8 exhibits differential subcellular localization in vivo, dependent on a discrete domain in its carboxy terminus. We suggest that the dynamic localization of Cx40.8 differentially influences Cx43-dependent cell proliferation during ontogeny and regeneration.http://europepmc.org/articles/PMC3275562?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sarah V Gerhart
Diane M Eble
R Michael Burger
Stefan N Oline
Ana Vacaru
Kirsten C Sadler
Rebecca Jefferis
M Kathryn Iovine
spellingShingle Sarah V Gerhart
Diane M Eble
R Michael Burger
Stefan N Oline
Ana Vacaru
Kirsten C Sadler
Rebecca Jefferis
M Kathryn Iovine
The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
PLoS ONE
author_facet Sarah V Gerhart
Diane M Eble
R Michael Burger
Stefan N Oline
Ana Vacaru
Kirsten C Sadler
Rebecca Jefferis
M Kathryn Iovine
author_sort Sarah V Gerhart
title The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
title_short The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
title_full The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
title_fullStr The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
title_full_unstemmed The Cx43-like connexin protein Cx40.8 is differentially localized during fin ontogeny and fin regeneration.
title_sort cx43-like connexin protein cx40.8 is differentially localized during fin ontogeny and fin regeneration.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Connexins (Cx) are the subunits of gap junctions, membraneous protein channels that permit the exchange of small molecules between adjacent cells. Cx43 is required for cell proliferation in the zebrafish caudal fin. Previously, we found that a Cx43-like connexin, cx40.8, is co-expressed with cx43 in the population of proliferating cells during fin regeneration. Here we demonstrate that Cx40.8 exhibits novel differential subcellular localization in vivo, depending on the growth status of the fin. During fin ontogeny, Cx40.8 is found at the plasma membrane, but Cx40.8 is retained in the Golgi apparatus during regeneration. We next identified a 30 amino acid domain of Cx40.8 responsible for its dynamic localization. One possible explanation for the differential localization is that Cx40.8 contributes to the regulation of Cx43 in vivo, perhaps modifying channel activity during ontogenetic growth. However, we find that the voltage-gating properties of Cx40.8 are similar to Cx43. Together our findings reveal that Cx40.8 exhibits differential subcellular localization in vivo, dependent on a discrete domain in its carboxy terminus. We suggest that the dynamic localization of Cx40.8 differentially influences Cx43-dependent cell proliferation during ontogeny and regeneration.
url http://europepmc.org/articles/PMC3275562?pdf=render
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