Alteration in Levels of Specific miRNAs and Their Potential Protein Targets between Human Pancreatic Cancer Samples, Adjacent Normal Tissue, and Xenografts Derived from These Tumors

Author:

O’Neill Fiona1,Allen-Coyle Taylor-Jade12,Roche Sandra1ORCID,Meiller Justine1,Conlon Neil T.1ORCID,Swan Niall3,Straubinger Robert M.4ORCID,Geoghegan Justin3,Straubinger Ninfa L.4,Conlon Kevin3,McDermott Ray3ORCID,O’Sullivan Finbarr12ORCID,Henry Michael1,Meleady Paula125,McVey Gerard6,O’Connor Robert1ORCID,Moriarty Michael16,Clynes Martin12ORCID

Affiliation:

1. National Institute for Cellular Biotechnology, Dublin City University, D09 NR58 Dublin, Ireland

2. SSPC, The Science Foundation Ireland Research Centre for Pharmaceuticals, V94 T9PX Limerick, Ireland

3. St. Vincent’s University Hospital, D04 T6F4 Dublin, Ireland

4. Department of Pharmaceutical Sciences, University at Buffalo, SUNY, Buffalo, NY 14214, USA

5. School of Biotechnology, Dublin City University, D09 K2OV Dublin, Ireland

6. St. Luke’s Hospital, Rathgar, D06 HH36 Dublin, Ireland

Abstract

Herein, we describe the global comparison of miRNAs in human pancreatic cancer tumors, adjacent normal tissue, and matched patient-derived xenograft models using microarray screening. RNA was extracted from seven tumor, five adjacent normal, and eight FI PDX tumor samples and analyzed by Affymetrix GeneChip miRNA 4.0 array. A transcriptome analysis console (TAC) was used to generate comparative lists of up- and downregulated miRNAs for the comparisons, tumor vs. normal and F1 PDX vs. tumor. Particular attention was paid to miRNAs that were changed in the same direction in both comparisons. We identified the involvement in pancreatic tumor tissue of several miRNAs, including miR4534, miR3154, and miR4742, not previously highlighted as being involved in this type of cancer. Investigation in the parallel mRNA and protein lists from the same samples allowed the elimination of proteins where altered expression correlated with corresponding mRNA levels and was thus less likely to be miRNA regulated. Using the remaining differential expression protein lists for proteins predicted to be targeted for differentially expressed miRNA on our list, we were able to tentatively ascribe specific protein changes to individual miRNA. Particularly interesting target proteins for miRs 615-3p, 2467-3p, 4742-5p, 509-5p, and 605-3p were identified. Prominent among the protein targets are enzymes involved in aldehyde metabolism and membrane transport and trafficking. These results may help to uncover vulnerabilities that could enable novel approaches to treating pancreatic cancer.

Funder

Pancreatic Cancer Research Fund U.K.

Science Foundation Ireland

European Regional Development Fund

U.S.–Ireland R&D Partnership Programme

US National Institutions of Health/ National Cancer Inst.

St Luke’s Institute for Cancer Research, Dublin

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

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