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Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters

Hedgehog (Hh) signaling pathway is a valid therapeutic target in a wide range of malignancies. We focus here on glioblastoma multiforme (GBM), a lethal malignancy of the central nervous system (CNS). By analyzing RNA-sequencing based transcriptomics data on 149 clinical cases of TCGA-GBM database we...

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Autores principales: Chandra, Vikas, Das, Tapojyoti, Gulati, Puneet, Biswas, Nidhan K., Rote, Sarang, Chatterjee, Uttara, Ghosh, Samarendra N., Deb, Sumit, Saha, Suniti K., Chowdhury, Anup K., Ghosh, Subhashish, Rudin, Charles M., Mukherjee, Ankur, Basu, Analabha, Dhara, Surajit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361547/
https://www.ncbi.nlm.nih.gov/pubmed/25775002
http://dx.doi.org/10.1371/journal.pone.0116390
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author Chandra, Vikas
Das, Tapojyoti
Gulati, Puneet
Biswas, Nidhan K.
Rote, Sarang
Chatterjee, Uttara
Ghosh, Samarendra N.
Deb, Sumit
Saha, Suniti K.
Chowdhury, Anup K.
Ghosh, Subhashish
Rudin, Charles M.
Mukherjee, Ankur
Basu, Analabha
Dhara, Surajit
author_facet Chandra, Vikas
Das, Tapojyoti
Gulati, Puneet
Biswas, Nidhan K.
Rote, Sarang
Chatterjee, Uttara
Ghosh, Samarendra N.
Deb, Sumit
Saha, Suniti K.
Chowdhury, Anup K.
Ghosh, Subhashish
Rudin, Charles M.
Mukherjee, Ankur
Basu, Analabha
Dhara, Surajit
author_sort Chandra, Vikas
collection PubMed
description Hedgehog (Hh) signaling pathway is a valid therapeutic target in a wide range of malignancies. We focus here on glioblastoma multiforme (GBM), a lethal malignancy of the central nervous system (CNS). By analyzing RNA-sequencing based transcriptomics data on 149 clinical cases of TCGA-GBM database we show here a strong correlation (r = 0.7) between GLI1 and PTCH1 mRNA expression—as a hallmark of the canonical Hh-pathway activity in this malignancy. GLI1 mRNA expression varied in 3 orders of magnitude among the GBM patients of the same cohort showing a single continuous distribution—unlike the discrete high/low-GLI1 mRNA expressing clusters of medulloblastoma (MB). When compared with MB as a reference, the median GLI1 mRNA expression in GBM appeared 14.8 fold lower than that of the “high-Hh” cluster of MB but 5.6 fold higher than that of the “low-Hh” cluster of MB. Next, we demonstrated statistically significant up- and down-regulation of GLI1 mRNA expressions in GBM patient-derived low-passage neurospheres in vitro by sonic hedgehog ligand-enriched conditioned media (shh-CM) and by Hh-inhibitor drug vismodegib respectively. We also showed clinically achievable dose (50 μM) of vismodegib alone to be sufficient to induce apoptosis and cell cycle arrest in these low-passage GBM neurospheres in vitro. Vismodegib showed an effect on the neurospheres, both by down-regulating GLI1 mRNA expression and by inducing apoptosis/cell cycle arrest, irrespective of their relative endogenous levels of GLI1 mRNA expression. We conclude from our study that this single continuous distribution pattern of GLI1 mRNA expression technically puts almost all GBM patients in a single group rather than discrete high- or low-clusters in terms of Hh-pathway activity. That is suggestive of therapies with Hh-pathway inhibitor drugs in this malignancy without a need for further stratification of patients on the basis of relative levels of Hh-pathway activity among them.
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spelling pubmed-43615472015-03-23 Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters Chandra, Vikas Das, Tapojyoti Gulati, Puneet Biswas, Nidhan K. Rote, Sarang Chatterjee, Uttara Ghosh, Samarendra N. Deb, Sumit Saha, Suniti K. Chowdhury, Anup K. Ghosh, Subhashish Rudin, Charles M. Mukherjee, Ankur Basu, Analabha Dhara, Surajit PLoS One Research Article Hedgehog (Hh) signaling pathway is a valid therapeutic target in a wide range of malignancies. We focus here on glioblastoma multiforme (GBM), a lethal malignancy of the central nervous system (CNS). By analyzing RNA-sequencing based transcriptomics data on 149 clinical cases of TCGA-GBM database we show here a strong correlation (r = 0.7) between GLI1 and PTCH1 mRNA expression—as a hallmark of the canonical Hh-pathway activity in this malignancy. GLI1 mRNA expression varied in 3 orders of magnitude among the GBM patients of the same cohort showing a single continuous distribution—unlike the discrete high/low-GLI1 mRNA expressing clusters of medulloblastoma (MB). When compared with MB as a reference, the median GLI1 mRNA expression in GBM appeared 14.8 fold lower than that of the “high-Hh” cluster of MB but 5.6 fold higher than that of the “low-Hh” cluster of MB. Next, we demonstrated statistically significant up- and down-regulation of GLI1 mRNA expressions in GBM patient-derived low-passage neurospheres in vitro by sonic hedgehog ligand-enriched conditioned media (shh-CM) and by Hh-inhibitor drug vismodegib respectively. We also showed clinically achievable dose (50 μM) of vismodegib alone to be sufficient to induce apoptosis and cell cycle arrest in these low-passage GBM neurospheres in vitro. Vismodegib showed an effect on the neurospheres, both by down-regulating GLI1 mRNA expression and by inducing apoptosis/cell cycle arrest, irrespective of their relative endogenous levels of GLI1 mRNA expression. We conclude from our study that this single continuous distribution pattern of GLI1 mRNA expression technically puts almost all GBM patients in a single group rather than discrete high- or low-clusters in terms of Hh-pathway activity. That is suggestive of therapies with Hh-pathway inhibitor drugs in this malignancy without a need for further stratification of patients on the basis of relative levels of Hh-pathway activity among them. Public Library of Science 2015-03-16 /pmc/articles/PMC4361547/ /pubmed/25775002 http://dx.doi.org/10.1371/journal.pone.0116390 Text en © 2015 Chandra et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chandra, Vikas
Das, Tapojyoti
Gulati, Puneet
Biswas, Nidhan K.
Rote, Sarang
Chatterjee, Uttara
Ghosh, Samarendra N.
Deb, Sumit
Saha, Suniti K.
Chowdhury, Anup K.
Ghosh, Subhashish
Rudin, Charles M.
Mukherjee, Ankur
Basu, Analabha
Dhara, Surajit
Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title_full Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title_fullStr Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title_full_unstemmed Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title_short Hedgehog Signaling Pathway Is Active in GBM with GLI1 mRNA Expression Showing a Single Continuous Distribution Rather than Discrete High/Low Clusters
title_sort hedgehog signaling pathway is active in gbm with gli1 mrna expression showing a single continuous distribution rather than discrete high/low clusters
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361547/
https://www.ncbi.nlm.nih.gov/pubmed/25775002
http://dx.doi.org/10.1371/journal.pone.0116390
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