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Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target

Bladder carcinoma (BC) incidence and mortality rates are increasing worldwide. The development of novel therapeutic strategies is required to improve clinical management of this cancer. Aberrant protein expression may lead to cancer initiation and progression. Therefore, the identification of these...

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Autores principales: Puttamallesh, Vinuth N., Deb, Barnali, Gondkar, Kirti, Jain, Ankit, Nair, Bipin, Pandey, Akhilesh, Chatterjee, Aditi, Gowda, Harsha, Kumar, Prashant
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397020/
https://www.ncbi.nlm.nih.gov/pubmed/32650368
http://dx.doi.org/10.3390/genes11070763
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author Puttamallesh, Vinuth N.
Deb, Barnali
Gondkar, Kirti
Jain, Ankit
Nair, Bipin
Pandey, Akhilesh
Chatterjee, Aditi
Gowda, Harsha
Kumar, Prashant
author_facet Puttamallesh, Vinuth N.
Deb, Barnali
Gondkar, Kirti
Jain, Ankit
Nair, Bipin
Pandey, Akhilesh
Chatterjee, Aditi
Gowda, Harsha
Kumar, Prashant
author_sort Puttamallesh, Vinuth N.
collection PubMed
description Bladder carcinoma (BC) incidence and mortality rates are increasing worldwide. The development of novel therapeutic strategies is required to improve clinical management of this cancer. Aberrant protein expression may lead to cancer initiation and progression. Therefore, the identification of these potential protein targets and limiting their expression levels would provide alternative treatment options. In this study, we utilized a liquid-chromatography tandem mass spectrometry-based global proteomics approach to identify differentially expressed proteins in bladder cancer cell lines. A total of 3913 proteins were identified in this study, of which 479 proteins were overexpressed and 141 proteins were downregulated in 4 out of 6 BC cell lines when compared with normal human urothelial cell line (TERT-NHUC). We evaluated the role of UDP-N-acetylhexosamine pyrophosphorylase (UAP1) in bladder cancer pathogenesis. The silencing of UAP1 led to reduction in proliferation, invasion, colony formation and migration capability of bladder cancer cell lines. Thus, our study reveals UAP1 as a promising therapeutic target for bladder cancer.
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spelling pubmed-73970202020-08-05 Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target Puttamallesh, Vinuth N. Deb, Barnali Gondkar, Kirti Jain, Ankit Nair, Bipin Pandey, Akhilesh Chatterjee, Aditi Gowda, Harsha Kumar, Prashant Genes (Basel) Article Bladder carcinoma (BC) incidence and mortality rates are increasing worldwide. The development of novel therapeutic strategies is required to improve clinical management of this cancer. Aberrant protein expression may lead to cancer initiation and progression. Therefore, the identification of these potential protein targets and limiting their expression levels would provide alternative treatment options. In this study, we utilized a liquid-chromatography tandem mass spectrometry-based global proteomics approach to identify differentially expressed proteins in bladder cancer cell lines. A total of 3913 proteins were identified in this study, of which 479 proteins were overexpressed and 141 proteins were downregulated in 4 out of 6 BC cell lines when compared with normal human urothelial cell line (TERT-NHUC). We evaluated the role of UDP-N-acetylhexosamine pyrophosphorylase (UAP1) in bladder cancer pathogenesis. The silencing of UAP1 led to reduction in proliferation, invasion, colony formation and migration capability of bladder cancer cell lines. Thus, our study reveals UAP1 as a promising therapeutic target for bladder cancer. MDPI 2020-07-08 /pmc/articles/PMC7397020/ /pubmed/32650368 http://dx.doi.org/10.3390/genes11070763 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Puttamallesh, Vinuth N.
Deb, Barnali
Gondkar, Kirti
Jain, Ankit
Nair, Bipin
Pandey, Akhilesh
Chatterjee, Aditi
Gowda, Harsha
Kumar, Prashant
Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title_full Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title_fullStr Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title_full_unstemmed Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title_short Quantitative Proteomics of Urinary Bladder Cancer Cell Lines Identify UAP1 as a Potential Therapeutic Target
title_sort quantitative proteomics of urinary bladder cancer cell lines identify uap1 as a potential therapeutic target
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397020/
https://www.ncbi.nlm.nih.gov/pubmed/32650368
http://dx.doi.org/10.3390/genes11070763
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