Disparate effects of p24alpha and p24delta on secretory protein transport and processing.

BACKGROUND: The p24 family is thought to be somehow involved in endoplasmic reticulum (ER)-to-Golgi protein transport. A subset of the p24 proteins (p24alpha(3), -beta(1), -gamma(3) and -delta(2)) is upregulated when Xenopus laevis intermediate pituitary melanotrope cells are physiologically activat...

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Main Authors: Jeroen R P M Strating, Gerrit Bouw, Theo G M Hafmans, Gerard J M Martens
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2007-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC1933603?pdf=render
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spelling doaj-13f582413b154ca6954fa956cdcd9fdb2020-11-25T02:38:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032007-01-0128e70410.1371/journal.pone.0000704Disparate effects of p24alpha and p24delta on secretory protein transport and processing.Jeroen R P M StratingGerrit BouwTheo G M HafmansGerard J M MartensBACKGROUND: The p24 family is thought to be somehow involved in endoplasmic reticulum (ER)-to-Golgi protein transport. A subset of the p24 proteins (p24alpha(3), -beta(1), -gamma(3) and -delta(2)) is upregulated when Xenopus laevis intermediate pituitary melanotrope cells are physiologically activated to produce vast amounts of their major secretory cargo, the prohormone proopiomelanocortin (POMC). METHODOLOGY/PRINCIPAL FINDINGS: Here we find that transgene expression of p24alpha(3 )or p24delta(2) specifically in the Xenopus melanotrope cells in both cases causes an effective displacement of the endogenous p24 proteins, resulting in severely distorted p24 systems and disparate melanotrope cell phenotypes. Transgene expression of p24alpha(3) greatly reduces POMC transport and leads to accumulation of the prohormone in large, ER-localized electron-dense structures, whereas p24delta(2)-transgenesis does not influence the overall ultrastructure of the cells nor POMC transport and cleavage, but affects the Golgi-based processes of POMC glycomaturation and sulfation. CONCLUSIONS/SIGNIFICANCE: Transgenic expression of two distinct p24 family members has disparate effects on secretory pathway functioning, illustrating the specificity and non-redundancy of our transgenic approach. We conclude that members of the p24 family furnish subcompartments of the secretory pathway with specific sets of machinery cargo to provide the proper microenvironments for efficient and correct secretory protein transport and processing.http://europepmc.org/articles/PMC1933603?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jeroen R P M Strating
Gerrit Bouw
Theo G M Hafmans
Gerard J M Martens
spellingShingle Jeroen R P M Strating
Gerrit Bouw
Theo G M Hafmans
Gerard J M Martens
Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
PLoS ONE
author_facet Jeroen R P M Strating
Gerrit Bouw
Theo G M Hafmans
Gerard J M Martens
author_sort Jeroen R P M Strating
title Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
title_short Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
title_full Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
title_fullStr Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
title_full_unstemmed Disparate effects of p24alpha and p24delta on secretory protein transport and processing.
title_sort disparate effects of p24alpha and p24delta on secretory protein transport and processing.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2007-01-01
description BACKGROUND: The p24 family is thought to be somehow involved in endoplasmic reticulum (ER)-to-Golgi protein transport. A subset of the p24 proteins (p24alpha(3), -beta(1), -gamma(3) and -delta(2)) is upregulated when Xenopus laevis intermediate pituitary melanotrope cells are physiologically activated to produce vast amounts of their major secretory cargo, the prohormone proopiomelanocortin (POMC). METHODOLOGY/PRINCIPAL FINDINGS: Here we find that transgene expression of p24alpha(3 )or p24delta(2) specifically in the Xenopus melanotrope cells in both cases causes an effective displacement of the endogenous p24 proteins, resulting in severely distorted p24 systems and disparate melanotrope cell phenotypes. Transgene expression of p24alpha(3) greatly reduces POMC transport and leads to accumulation of the prohormone in large, ER-localized electron-dense structures, whereas p24delta(2)-transgenesis does not influence the overall ultrastructure of the cells nor POMC transport and cleavage, but affects the Golgi-based processes of POMC glycomaturation and sulfation. CONCLUSIONS/SIGNIFICANCE: Transgenic expression of two distinct p24 family members has disparate effects on secretory pathway functioning, illustrating the specificity and non-redundancy of our transgenic approach. We conclude that members of the p24 family furnish subcompartments of the secretory pathway with specific sets of machinery cargo to provide the proper microenvironments for efficient and correct secretory protein transport and processing.
url http://europepmc.org/articles/PMC1933603?pdf=render
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