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Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes

OBJECTIVE: Bulk tissue genomic analysis of meningiomas identified common somatic mutations, however, it often excluded blood-related variants. In contrast, genomic characterisation of primary cell lines that can provide critical information regarding growth and proliferation, have been rare. In our...

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Autores principales: Hussein, Deema, Dallol, Ashraf, Quintas, Rita, Schulten, Hans-Juergen, Alomari, Mona, Baeesa, Saleh, Bangash, Mohammed, Alghamdi, Fahad, Khan, Ishaq, ElAssouli, M-Zaki Mustafa, Saka, Mohamad, Carracedo, Angel, Chaudhary, Adeel, Abuzenadah, Adel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710648/
https://www.ncbi.nlm.nih.gov/pubmed/33305042
http://dx.doi.org/10.1016/j.heliyon.2020.e05632
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author Hussein, Deema
Dallol, Ashraf
Quintas, Rita
Schulten, Hans-Juergen
Alomari, Mona
Baeesa, Saleh
Bangash, Mohammed
Alghamdi, Fahad
Khan, Ishaq
ElAssouli, M-Zaki Mustafa
Saka, Mohamad
Carracedo, Angel
Chaudhary, Adeel
Abuzenadah, Adel
author_facet Hussein, Deema
Dallol, Ashraf
Quintas, Rita
Schulten, Hans-Juergen
Alomari, Mona
Baeesa, Saleh
Bangash, Mohammed
Alghamdi, Fahad
Khan, Ishaq
ElAssouli, M-Zaki Mustafa
Saka, Mohamad
Carracedo, Angel
Chaudhary, Adeel
Abuzenadah, Adel
author_sort Hussein, Deema
collection PubMed
description OBJECTIVE: Bulk tissue genomic analysis of meningiomas identified common somatic mutations, however, it often excluded blood-related variants. In contrast, genomic characterisation of primary cell lines that can provide critical information regarding growth and proliferation, have been rare. In our work, we identified the variants that are present in the blood, tissues and corresponding cell lines that are likely to be predictive, tumorigenic and progressive. METHOD: Whole-exome sequencing was used to identify variants and distinguish related pathways that exist in 42 blood, tissues and corresponding cell lines (BTCs) samples for patients with intracranial meningiomas. Conventional sequencing was used for the confirmation of variants. Integrative analysis of the gene expression for the corresponding samples was utilised for further interpretations. RESULTS: In total, 926 BTC variants were detected, implicating 845 genes. A pathway analysis of all BTC genes with damaging variants indicated the ‘cell morphogenesis involved in differentiation’ stem cell-related pathway to be the most frequently affected pathway. Concordantly, five stem cell-related genes, GPRIN2, ALDH3B2, ASPN, THSD7A and SIGLEC6, showed BTC variants in at least five of the patients. Variants that were heterozygous in the blood and homozygous in the tissues or the corresponding cell lines were rare (average: 1.3 ± 0.3%), and included variants in the RUNX2 and CCDC114 genes. An analysis comparing the variants detected only in tumours with aggressive features indicated a total of 240 BTC genes, implicating the ‘homophilic cell adhesion via plasma membrane adhesion molecules’ pathway, and identifying the stem cell-related transcription coactivator NCOA3/AIB1/SRC3 as the most frequent BTC gene. Further analysis of the possible impact of the poly-Q mutation present in the NCOA3 gene indicated associated deregulation of 15 genes, including the up-regulation of the stem cell related SEMA3D gene and the angiogenesis related VEGFA gene. CONCLUSION: Stem cell-related pathways and genes showed high prevalence in the BTC variants, and novel variants in stem cell-related genes were identified for meningioma. These variants can potentially be used as predictive, tumorigenic and progressive biomarkers for meningioma.
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spelling pubmed-77106482020-12-09 Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes Hussein, Deema Dallol, Ashraf Quintas, Rita Schulten, Hans-Juergen Alomari, Mona Baeesa, Saleh Bangash, Mohammed Alghamdi, Fahad Khan, Ishaq ElAssouli, M-Zaki Mustafa Saka, Mohamad Carracedo, Angel Chaudhary, Adeel Abuzenadah, Adel Heliyon Research Article OBJECTIVE: Bulk tissue genomic analysis of meningiomas identified common somatic mutations, however, it often excluded blood-related variants. In contrast, genomic characterisation of primary cell lines that can provide critical information regarding growth and proliferation, have been rare. In our work, we identified the variants that are present in the blood, tissues and corresponding cell lines that are likely to be predictive, tumorigenic and progressive. METHOD: Whole-exome sequencing was used to identify variants and distinguish related pathways that exist in 42 blood, tissues and corresponding cell lines (BTCs) samples for patients with intracranial meningiomas. Conventional sequencing was used for the confirmation of variants. Integrative analysis of the gene expression for the corresponding samples was utilised for further interpretations. RESULTS: In total, 926 BTC variants were detected, implicating 845 genes. A pathway analysis of all BTC genes with damaging variants indicated the ‘cell morphogenesis involved in differentiation’ stem cell-related pathway to be the most frequently affected pathway. Concordantly, five stem cell-related genes, GPRIN2, ALDH3B2, ASPN, THSD7A and SIGLEC6, showed BTC variants in at least five of the patients. Variants that were heterozygous in the blood and homozygous in the tissues or the corresponding cell lines were rare (average: 1.3 ± 0.3%), and included variants in the RUNX2 and CCDC114 genes. An analysis comparing the variants detected only in tumours with aggressive features indicated a total of 240 BTC genes, implicating the ‘homophilic cell adhesion via plasma membrane adhesion molecules’ pathway, and identifying the stem cell-related transcription coactivator NCOA3/AIB1/SRC3 as the most frequent BTC gene. Further analysis of the possible impact of the poly-Q mutation present in the NCOA3 gene indicated associated deregulation of 15 genes, including the up-regulation of the stem cell related SEMA3D gene and the angiogenesis related VEGFA gene. CONCLUSION: Stem cell-related pathways and genes showed high prevalence in the BTC variants, and novel variants in stem cell-related genes were identified for meningioma. These variants can potentially be used as predictive, tumorigenic and progressive biomarkers for meningioma. Elsevier 2020-11-30 /pmc/articles/PMC7710648/ /pubmed/33305042 http://dx.doi.org/10.1016/j.heliyon.2020.e05632 Text en © 2020 Published by Elsevier Ltd. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Hussein, Deema
Dallol, Ashraf
Quintas, Rita
Schulten, Hans-Juergen
Alomari, Mona
Baeesa, Saleh
Bangash, Mohammed
Alghamdi, Fahad
Khan, Ishaq
ElAssouli, M-Zaki Mustafa
Saka, Mohamad
Carracedo, Angel
Chaudhary, Adeel
Abuzenadah, Adel
Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title_full Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title_fullStr Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title_full_unstemmed Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title_short Overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
title_sort overlapping variants in the blood, tissues and cell lines for patients with intracranial meningiomas are predominant in stem cell-related genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710648/
https://www.ncbi.nlm.nih.gov/pubmed/33305042
http://dx.doi.org/10.1016/j.heliyon.2020.e05632
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