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Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth

SIMPLE SUMMARY: A marked reduction in soluble guanylyl cyclase β1 (sGCβ1) transcript is characteristic for human glioma specimens. Restoring the expression of sGCβ1 inhibited the aggressive course of glioblastoma in an orthotopic xenograft mouse model. The present study is the first to reveal that s...

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Autores principales: Xiao, Haijie, Zhu, Haifeng, Bögler, Oliver, Mónica, Fabiola Zakia, Kots, Alexander Y., Murad, Ferid, Bian, Ka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001022/
https://www.ncbi.nlm.nih.gov/pubmed/36900358
http://dx.doi.org/10.3390/cancers15051567
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author Xiao, Haijie
Zhu, Haifeng
Bögler, Oliver
Mónica, Fabiola Zakia
Kots, Alexander Y.
Murad, Ferid
Bian, Ka
author_facet Xiao, Haijie
Zhu, Haifeng
Bögler, Oliver
Mónica, Fabiola Zakia
Kots, Alexander Y.
Murad, Ferid
Bian, Ka
author_sort Xiao, Haijie
collection PubMed
description SIMPLE SUMMARY: A marked reduction in soluble guanylyl cyclase β1 (sGCβ1) transcript is characteristic for human glioma specimens. Restoring the expression of sGCβ1 inhibited the aggressive course of glioblastoma in an orthotopic xenograft mouse model. The present study is the first to reveal that sGCβ1 migrated into the nucleus and interacted with the promoter of the TP53 gene. sGCβ1 overexpression impacted signaling in glioblastoma multiforme, including the promotion of nuclear accumulation of p53, a marked reduction in cyclin-dependent kinase 6 (CDK6), and a significant decrease in integrin α6. Antitumor effect of sGCβ1 was not associated with enzymatic activity of sGC. ABSTRACT: Malignant glioma is the most common and deadly brain tumor. A marked reduction in the levels of sGC (soluble guanylyl cyclase) transcript in the human glioma specimens has been revealed in our previous studies. In the present study, restoring the expression of sGCβ1 alone repressed the aggressive course of glioma. The antitumor effect of sGCβ1 was not associated with enzymatic activity of sGC since overexpression of sGCβ1 alone did not influence the level of cyclic GMP. Additionally, sGCβ1-induced inhibition of the growth of glioma cells was not influenced by treatment with sGC stimulators or inhibitors. The present study is the first to reveal that sGCβ1 migrated into the nucleus and interacted with the promoter of the TP53 gene. Transcriptional responses induced by sGCβ1 caused the G0 cell cycle arrest of glioblastoma cells and inhibition of tumor aggressiveness. sGCβ1 overexpression impacted signaling in glioblastoma multiforme, including the promotion of nuclear accumulation of p53, a marked reduction in CDK6, and a significant decrease in integrin α6. These anticancer targets of sGCβ1 may represent clinically important regulatory pathways that contribute to the development of a therapeutic strategy for cancer treatment.
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spelling pubmed-100010222023-03-11 Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth Xiao, Haijie Zhu, Haifeng Bögler, Oliver Mónica, Fabiola Zakia Kots, Alexander Y. Murad, Ferid Bian, Ka Cancers (Basel) Article SIMPLE SUMMARY: A marked reduction in soluble guanylyl cyclase β1 (sGCβ1) transcript is characteristic for human glioma specimens. Restoring the expression of sGCβ1 inhibited the aggressive course of glioblastoma in an orthotopic xenograft mouse model. The present study is the first to reveal that sGCβ1 migrated into the nucleus and interacted with the promoter of the TP53 gene. sGCβ1 overexpression impacted signaling in glioblastoma multiforme, including the promotion of nuclear accumulation of p53, a marked reduction in cyclin-dependent kinase 6 (CDK6), and a significant decrease in integrin α6. Antitumor effect of sGCβ1 was not associated with enzymatic activity of sGC. ABSTRACT: Malignant glioma is the most common and deadly brain tumor. A marked reduction in the levels of sGC (soluble guanylyl cyclase) transcript in the human glioma specimens has been revealed in our previous studies. In the present study, restoring the expression of sGCβ1 alone repressed the aggressive course of glioma. The antitumor effect of sGCβ1 was not associated with enzymatic activity of sGC since overexpression of sGCβ1 alone did not influence the level of cyclic GMP. Additionally, sGCβ1-induced inhibition of the growth of glioma cells was not influenced by treatment with sGC stimulators or inhibitors. The present study is the first to reveal that sGCβ1 migrated into the nucleus and interacted with the promoter of the TP53 gene. Transcriptional responses induced by sGCβ1 caused the G0 cell cycle arrest of glioblastoma cells and inhibition of tumor aggressiveness. sGCβ1 overexpression impacted signaling in glioblastoma multiforme, including the promotion of nuclear accumulation of p53, a marked reduction in CDK6, and a significant decrease in integrin α6. These anticancer targets of sGCβ1 may represent clinically important regulatory pathways that contribute to the development of a therapeutic strategy for cancer treatment. MDPI 2023-03-02 /pmc/articles/PMC10001022/ /pubmed/36900358 http://dx.doi.org/10.3390/cancers15051567 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiao, Haijie
Zhu, Haifeng
Bögler, Oliver
Mónica, Fabiola Zakia
Kots, Alexander Y.
Murad, Ferid
Bian, Ka
Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title_full Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title_fullStr Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title_full_unstemmed Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title_short Soluble Guanylate Cyclase β1 Subunit Represses Human Glioblastoma Growth
title_sort soluble guanylate cyclase β1 subunit represses human glioblastoma growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10001022/
https://www.ncbi.nlm.nih.gov/pubmed/36900358
http://dx.doi.org/10.3390/cancers15051567
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