Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.

Forchlorfenuron (FCF) is a synthetic plant cytokinin that has been shown to alter yeast and mammalian septin organization. Septins are a highly conserved family of GTP-binding cytoskeletal proteins. Mammalian septins are involved in diverse cellular processes including tumorigenesis. We have been st...

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Main Authors: Dikla Vardi-Oknin, Maya Golan, Nicola J Mabjeesh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3747094?pdf=render
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spelling doaj-ce71fd4bd95e40d79ab09afb0160202c2020-11-25T02:06:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0188e7317910.1371/journal.pone.0073179Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.Dikla Vardi-OkninMaya GolanNicola J MabjeeshForchlorfenuron (FCF) is a synthetic plant cytokinin that has been shown to alter yeast and mammalian septin organization. Septins are a highly conserved family of GTP-binding cytoskeletal proteins. Mammalian septins are involved in diverse cellular processes including tumorigenesis. We have been studying the interaction between septin 9 isoform 1 (SEPT9_i1) and hypoxia inducible factor-1α (HIF-1α), the oxygen regulated subunit of HIF-1. HIF-1 is a key transcription factor in the hypoxic responses pathway, and its activation has been observed in carcinogenesis and numerous cancers. SEPT9_i1/HIF-1α interaction plays an important role in upregulation of HIF-1 transcriptional activity by preventing HIF-1α's ubiquitination and degradation leading to increased tumor growth and angiogenesis. We tested the hypothesis whether FCF affects SEPT9_i1 filamentous structures and consequently HIF-1 pathway in cancer cells. We showed that FCF suppresses tumorigenic properties, including proliferation, migration and transformation, in prostate cancer cells. FCF did not alter SEPT9_i1 steady state protein expression levels but it affected its filamentous structures and subcellular localization. FCF induced degradation of HIF-1α protein in a dose- and time-dependent manner. This inhibition was also shown in other common cancer types tested. Rapid degradation of HIF-1α protein levels was accompanied by respective inhibition in HIF-1α transcriptional activity. Moreover, HIF-1α protein half-life was markedly decreased in the presence of FCF compared with that in the absence of FCF. The FCF-induced degradation of HIF-1α was mediated in a significant part via the proteasome. To the best of our knowledge, this is the first demonstration of specific manipulation of septin filaments by pharmacological means having downstream inhibitory effects on the HIF-1 pathway.http://europepmc.org/articles/PMC3747094?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dikla Vardi-Oknin
Maya Golan
Nicola J Mabjeesh
spellingShingle Dikla Vardi-Oknin
Maya Golan
Nicola J Mabjeesh
Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
PLoS ONE
author_facet Dikla Vardi-Oknin
Maya Golan
Nicola J Mabjeesh
author_sort Dikla Vardi-Oknin
title Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
title_short Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
title_full Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
title_fullStr Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
title_full_unstemmed Forchlorfenuron disrupts SEPT9_i1 filaments and inhibits HIF-1.
title_sort forchlorfenuron disrupts sept9_i1 filaments and inhibits hif-1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Forchlorfenuron (FCF) is a synthetic plant cytokinin that has been shown to alter yeast and mammalian septin organization. Septins are a highly conserved family of GTP-binding cytoskeletal proteins. Mammalian septins are involved in diverse cellular processes including tumorigenesis. We have been studying the interaction between septin 9 isoform 1 (SEPT9_i1) and hypoxia inducible factor-1α (HIF-1α), the oxygen regulated subunit of HIF-1. HIF-1 is a key transcription factor in the hypoxic responses pathway, and its activation has been observed in carcinogenesis and numerous cancers. SEPT9_i1/HIF-1α interaction plays an important role in upregulation of HIF-1 transcriptional activity by preventing HIF-1α's ubiquitination and degradation leading to increased tumor growth and angiogenesis. We tested the hypothesis whether FCF affects SEPT9_i1 filamentous structures and consequently HIF-1 pathway in cancer cells. We showed that FCF suppresses tumorigenic properties, including proliferation, migration and transformation, in prostate cancer cells. FCF did not alter SEPT9_i1 steady state protein expression levels but it affected its filamentous structures and subcellular localization. FCF induced degradation of HIF-1α protein in a dose- and time-dependent manner. This inhibition was also shown in other common cancer types tested. Rapid degradation of HIF-1α protein levels was accompanied by respective inhibition in HIF-1α transcriptional activity. Moreover, HIF-1α protein half-life was markedly decreased in the presence of FCF compared with that in the absence of FCF. The FCF-induced degradation of HIF-1α was mediated in a significant part via the proteasome. To the best of our knowledge, this is the first demonstration of specific manipulation of septin filaments by pharmacological means having downstream inhibitory effects on the HIF-1 pathway.
url http://europepmc.org/articles/PMC3747094?pdf=render
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