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Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures

Head and neck cancer is the sixth most common cancer worldwide, with tobacco as the leading cause. However, it is increasing in non-tobacco users also, hence limiting our understanding of its underlying molecular mechanisms. RNA-seq analysis of cancers has proven as effective tool in understanding d...

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Autores principales: Shaikh, Inayatullah, Ansari, Afzal, Ayachit, Garima, Gandhi, Monika, Sharma, Priyanka, Bhairappanavar, Shivarudrappa, Joshi, Chaitanya G., Das, Jayashankar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6817442/
https://www.ncbi.nlm.nih.gov/pubmed/31692905
http://dx.doi.org/10.18632/oncotarget.27249
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author Shaikh, Inayatullah
Ansari, Afzal
Ayachit, Garima
Gandhi, Monika
Sharma, Priyanka
Bhairappanavar, Shivarudrappa
Joshi, Chaitanya G.
Das, Jayashankar
author_facet Shaikh, Inayatullah
Ansari, Afzal
Ayachit, Garima
Gandhi, Monika
Sharma, Priyanka
Bhairappanavar, Shivarudrappa
Joshi, Chaitanya G.
Das, Jayashankar
author_sort Shaikh, Inayatullah
collection PubMed
description Head and neck cancer is the sixth most common cancer worldwide, with tobacco as the leading cause. However, it is increasing in non-tobacco users also, hence limiting our understanding of its underlying molecular mechanisms. RNA-seq analysis of cancers has proven as effective tool in understanding disease etiology. In the present study, RNA-Seq of 86 matched Tumor/Normal pairs, of tobacco smoking (TOB) and non-smokers (N-TOB) HNSCC samples analyzed, followed by validation on 375 similar datasets. Total 2194 and 2073 differentially expressed genes were identified in TOB and N-TOB tumors, respectively. GO analysis found muscle contraction as the most enriched biological process in both TOB and N-TOB tumors. Pathway analysis identified muscle contraction and salivary secretion pathways enriched in both categories, whereas calcium signaling and neuroactive ligand-receptor pathway was more enriched in TOB and N-TOB tumors respectively. Network analysis identified muscle development related genes as hub node i. e. ACTN2, MYL2 and TTN in both TOB and N-TOB tumors, whereas EGFR and MYH6, depicts specific role in TOB and N-TOB tumors. Additionally, we found enriched gene networks possibly be regulated by tumor suppressor miRNAs such as hsa-miR-29/a/b/c, hsa-miR-26b-5p etc., suggestive to be key riboswitches in regulatory cascade of HNSCC. Interestingly, three genes PKLR, CST1 and C17orf77 found to show opposite regulation in each category, hence suggested to be key genes in separating TOB from N-TOB tumors. Our investigation identified key genes involved in important pathways implicated in tobacco dependent and independent carcinogenesis hence may help in designing precise HNSCC diagnostics and therapeutics strategies.
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spelling pubmed-68174422019-11-05 Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures Shaikh, Inayatullah Ansari, Afzal Ayachit, Garima Gandhi, Monika Sharma, Priyanka Bhairappanavar, Shivarudrappa Joshi, Chaitanya G. Das, Jayashankar Oncotarget Research Paper Head and neck cancer is the sixth most common cancer worldwide, with tobacco as the leading cause. However, it is increasing in non-tobacco users also, hence limiting our understanding of its underlying molecular mechanisms. RNA-seq analysis of cancers has proven as effective tool in understanding disease etiology. In the present study, RNA-Seq of 86 matched Tumor/Normal pairs, of tobacco smoking (TOB) and non-smokers (N-TOB) HNSCC samples analyzed, followed by validation on 375 similar datasets. Total 2194 and 2073 differentially expressed genes were identified in TOB and N-TOB tumors, respectively. GO analysis found muscle contraction as the most enriched biological process in both TOB and N-TOB tumors. Pathway analysis identified muscle contraction and salivary secretion pathways enriched in both categories, whereas calcium signaling and neuroactive ligand-receptor pathway was more enriched in TOB and N-TOB tumors respectively. Network analysis identified muscle development related genes as hub node i. e. ACTN2, MYL2 and TTN in both TOB and N-TOB tumors, whereas EGFR and MYH6, depicts specific role in TOB and N-TOB tumors. Additionally, we found enriched gene networks possibly be regulated by tumor suppressor miRNAs such as hsa-miR-29/a/b/c, hsa-miR-26b-5p etc., suggestive to be key riboswitches in regulatory cascade of HNSCC. Interestingly, three genes PKLR, CST1 and C17orf77 found to show opposite regulation in each category, hence suggested to be key genes in separating TOB from N-TOB tumors. Our investigation identified key genes involved in important pathways implicated in tobacco dependent and independent carcinogenesis hence may help in designing precise HNSCC diagnostics and therapeutics strategies. Impact Journals LLC 2019-10-22 /pmc/articles/PMC6817442/ /pubmed/31692905 http://dx.doi.org/10.18632/oncotarget.27249 Text en Copyright: © 2019 Shaikh et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Shaikh, Inayatullah
Ansari, Afzal
Ayachit, Garima
Gandhi, Monika
Sharma, Priyanka
Bhairappanavar, Shivarudrappa
Joshi, Chaitanya G.
Das, Jayashankar
Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title_full Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title_fullStr Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title_full_unstemmed Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title_short Differential gene expression analysis of HNSCC tumors deciphered tobacco dependent and independent molecular signatures
title_sort differential gene expression analysis of hnscc tumors deciphered tobacco dependent and independent molecular signatures
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6817442/
https://www.ncbi.nlm.nih.gov/pubmed/31692905
http://dx.doi.org/10.18632/oncotarget.27249
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