Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.

Most patients with Cystic Fibrosis (CF) carry at least one allele with the F508del mutation, resulting in a CFTR chloride channel protein with a processing, gating and stability defect, but with substantial residual activity when correctly sorted to the apical membranes of epithelial cells. New ther...

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Main Authors: Martina Wilke, Alice Bot, Huub Jorna, Bob J Scholte, Hugo R de Jonge
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3528711?pdf=render
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spelling doaj-e4a72a852bf842899d97d2b6bc5bfb9f2020-11-25T02:04:02ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01712e5207010.1371/journal.pone.0052070Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.Martina WilkeAlice BotHuub JornaBob J ScholteHugo R de JongeMost patients with Cystic Fibrosis (CF) carry at least one allele with the F508del mutation, resulting in a CFTR chloride channel protein with a processing, gating and stability defect, but with substantial residual activity when correctly sorted to the apical membranes of epithelial cells. New therapies are therefore aimed at improving the folding and trafficking of F508del CFTR, (CFTR correctors) or at enhancing the open probability of the CFTR chloride channel (CFTR potentiators). Preventing premature breakdown of F508del CFTR is an alternative or additional strategy, which is investigated in this study. We established an ex vivo assay for murine F508del CFTR rescue in native intestinal epithelium that can be used as a pre-clinical test for candidate therapeutics. Overnight incubation of muscle stripped ileum in modified William's E medium at low temperature (26°C), and 4 h or 6 h incubation at 37°C with different proteasome inhibitors (PI: ALLN, MG-132, epoxomicin, PS341/bortezomib) resulted in fifty to hundred percent respectively of the wild type CFTR mediated chloride secretion (forskolin induced short-circuit current). The functional rescue was accompanied by enhanced expression of the murine F508del CFTR protein at the apical surface of intestinal crypts and a gain in the amount of complex-glycosylated CFTR (band C) up to 20% of WT levels. Sustained rescue in the presence of brefeldin A shows the involvement of a post-Golgi compartment in murine F508del CFTR degradation, as was shown earlier for its human counterpart. Our data show that proteasome inhibitors are promising candidate compounds for improving rescue of human F508del CFTR function, in combination with available correctors and potentiators.http://europepmc.org/articles/PMC3528711?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Martina Wilke
Alice Bot
Huub Jorna
Bob J Scholte
Hugo R de Jonge
spellingShingle Martina Wilke
Alice Bot
Huub Jorna
Bob J Scholte
Hugo R de Jonge
Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
PLoS ONE
author_facet Martina Wilke
Alice Bot
Huub Jorna
Bob J Scholte
Hugo R de Jonge
author_sort Martina Wilke
title Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
title_short Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
title_full Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
title_fullStr Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
title_full_unstemmed Rescue of murine F508del CFTR activity in native intestine by low temperature and proteasome inhibitors.
title_sort rescue of murine f508del cftr activity in native intestine by low temperature and proteasome inhibitors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Most patients with Cystic Fibrosis (CF) carry at least one allele with the F508del mutation, resulting in a CFTR chloride channel protein with a processing, gating and stability defect, but with substantial residual activity when correctly sorted to the apical membranes of epithelial cells. New therapies are therefore aimed at improving the folding and trafficking of F508del CFTR, (CFTR correctors) or at enhancing the open probability of the CFTR chloride channel (CFTR potentiators). Preventing premature breakdown of F508del CFTR is an alternative or additional strategy, which is investigated in this study. We established an ex vivo assay for murine F508del CFTR rescue in native intestinal epithelium that can be used as a pre-clinical test for candidate therapeutics. Overnight incubation of muscle stripped ileum in modified William's E medium at low temperature (26°C), and 4 h or 6 h incubation at 37°C with different proteasome inhibitors (PI: ALLN, MG-132, epoxomicin, PS341/bortezomib) resulted in fifty to hundred percent respectively of the wild type CFTR mediated chloride secretion (forskolin induced short-circuit current). The functional rescue was accompanied by enhanced expression of the murine F508del CFTR protein at the apical surface of intestinal crypts and a gain in the amount of complex-glycosylated CFTR (band C) up to 20% of WT levels. Sustained rescue in the presence of brefeldin A shows the involvement of a post-Golgi compartment in murine F508del CFTR degradation, as was shown earlier for its human counterpart. Our data show that proteasome inhibitors are promising candidate compounds for improving rescue of human F508del CFTR function, in combination with available correctors and potentiators.
url http://europepmc.org/articles/PMC3528711?pdf=render
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