Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.

Small cell lung cancer (SCLC) is aggressive, with rapid growth and frequent bone metastasis; however, its detailed molecular mechanism remains poorly understood. Here, we report the critical role of early growth factor 4 (EGR4), a DNA-binding, zinc-finger transcription factor, in cell proliferation...

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Main Authors: Taisuke Matsuo, Le Tan Dat, Masato Komatsu, Tetsuro Yoshimaru, Kei Daizumoto, Saburo Sone, Yasuhiko Nishioka, Toyomasa Katagiri
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4239076?pdf=render
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spelling doaj-378e9676057d493cbbf7af746fba47a42020-11-25T00:44:18ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01911e11360610.1371/journal.pone.0113606Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.Taisuke MatsuoLe Tan DatMasato KomatsuTetsuro YoshimaruKei DaizumotoSaburo SoneYasuhiko NishiokaToyomasa KatagiriSmall cell lung cancer (SCLC) is aggressive, with rapid growth and frequent bone metastasis; however, its detailed molecular mechanism remains poorly understood. Here, we report the critical role of early growth factor 4 (EGR4), a DNA-binding, zinc-finger transcription factor, in cell proliferation of SCLC. EGR4 overexpression in HEK293T cells conferred significant upregulation of specific splice variants of the parathyroid hormone-related protein (PTHrP) gene, resulting in enhancement of the secretion of PTHrP protein, a known mediator of osteolytic bone metastasis. More importantly, depletion of EGR4 expression by siRNA significantly suppressed growth of the SCLC cell lines, SBC-5, SBC-3 and NCI-H1048. On the other hand, introduction of EGR4 into NIH3T3 cells significantly enhanced cell growth. We identified four EGR4 target genes, SAMD5, RAB15, SYNPO and DLX5, which were the most significantly downregulated genes upon depletion of EGR4 expression in all of the SCLC cells examined, and demonstrated the direct recruitment of EGR4 to their promoters by ChIP and luciferase reporter analysis. Notably, knockdown of the expression of these genes by siRNA remarkably suppressed the growth of all the SCLC cells. Taken together, our findings suggest that EGR4 likely regulates the bone metastasis and proliferation of SCLC cells via transcriptional regulation of several target genes, and may therefore be a promising target for the development of anticancer drugs for SCLC patients.http://europepmc.org/articles/PMC4239076?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Taisuke Matsuo
Le Tan Dat
Masato Komatsu
Tetsuro Yoshimaru
Kei Daizumoto
Saburo Sone
Yasuhiko Nishioka
Toyomasa Katagiri
spellingShingle Taisuke Matsuo
Le Tan Dat
Masato Komatsu
Tetsuro Yoshimaru
Kei Daizumoto
Saburo Sone
Yasuhiko Nishioka
Toyomasa Katagiri
Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
PLoS ONE
author_facet Taisuke Matsuo
Le Tan Dat
Masato Komatsu
Tetsuro Yoshimaru
Kei Daizumoto
Saburo Sone
Yasuhiko Nishioka
Toyomasa Katagiri
author_sort Taisuke Matsuo
title Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
title_short Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
title_full Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
title_fullStr Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
title_full_unstemmed Early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
title_sort early growth response 4 is involved in cell proliferation of small cell lung cancer through transcriptional activation of its downstream genes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Small cell lung cancer (SCLC) is aggressive, with rapid growth and frequent bone metastasis; however, its detailed molecular mechanism remains poorly understood. Here, we report the critical role of early growth factor 4 (EGR4), a DNA-binding, zinc-finger transcription factor, in cell proliferation of SCLC. EGR4 overexpression in HEK293T cells conferred significant upregulation of specific splice variants of the parathyroid hormone-related protein (PTHrP) gene, resulting in enhancement of the secretion of PTHrP protein, a known mediator of osteolytic bone metastasis. More importantly, depletion of EGR4 expression by siRNA significantly suppressed growth of the SCLC cell lines, SBC-5, SBC-3 and NCI-H1048. On the other hand, introduction of EGR4 into NIH3T3 cells significantly enhanced cell growth. We identified four EGR4 target genes, SAMD5, RAB15, SYNPO and DLX5, which were the most significantly downregulated genes upon depletion of EGR4 expression in all of the SCLC cells examined, and demonstrated the direct recruitment of EGR4 to their promoters by ChIP and luciferase reporter analysis. Notably, knockdown of the expression of these genes by siRNA remarkably suppressed the growth of all the SCLC cells. Taken together, our findings suggest that EGR4 likely regulates the bone metastasis and proliferation of SCLC cells via transcriptional regulation of several target genes, and may therefore be a promising target for the development of anticancer drugs for SCLC patients.
url http://europepmc.org/articles/PMC4239076?pdf=render
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