Literature DB >> 31602319

A cellular and bioinformatics analysis of the SENP1 SUMO isopeptidase in pancreatic cancer.

Danielle M Bouchard1, Michael J Matunis1.   

Abstract

Sumoylation is an important post-translational modification that involves the conjugation of the Small Ubiquitin-related Modifier (SUMO) onto target proteins. This modification is reversed through the catalytic activity of SUMO isopeptidases, known as SENPs. One of these SENPs, SENP1, was reported to be overexpressed in human pancreatic cancer cells and patient tissues. Since elevated SENP1 expression levels can be used as a prognostic marker for a subset of cancers, we set out to further explore the overexpression of SENP1 in pancreatic cancer. We found that SENP1 protein levels were not significantly different between pancreatic cancer and normal pancreas-derived cell lines. To evaluate SENP1 expression in patient samples, we analyzed large publicly available datasets and found that SENP1 mRNA levels were significantly lower in pancreatic cancer tissue as compared to normal pancreas tissue samples. Furthermore, we found that the SENP1 gene is amplified in less than 1% of sequenced pancreatic cancer patient samples and that expression levels have no association with patient survival. Based on our analysis, we conclude that SENP1 is not overexpressed in pancreatic cancer and is therefore not likely to be an effective biomarker for this disease. Through this work, we also outline a simple but powerful bioinformatics workflow for the assessment of mRNA expression levels, genomic alterations and survival analysis for putative biomarkers for common human cancers. 2019 Journal of Gastrointestinal Oncology. All rights reserved.

Entities:  

Keywords:  SENP1; bioinformatics; biomarker; cell biology; pancreatic cancer

Year:  2019        PMID: 31602319      PMCID: PMC6776818          DOI: 10.21037/jgo.2019.05.09

Source DB:  PubMed          Journal:  J Gastrointest Oncol        ISSN: 2078-6891


  43 in total

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Review 2.  Hinokiflavone and Related C-O-C-Type Biflavonoids as Anti-cancer Compounds: Properties and Mechanism of Action.

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Review 3.  The SUMO pathway in pancreatic cancer: insights and inhibition.

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4.  Plasma Exosome-Derived Sentrin SUMO-Specific Protease 1: A Prognostic Biomarker in Patients With Osteosarcoma.

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Review 5.  Cancer-Associated Dysregulation of Sumo Regulators: Proteases and Ligases.

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Review 6.  Impact of posttranslational modifications in pancreatic carcinogenesis and treatments.

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