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Updated: Nov 29, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Kinome Array Profiling of Patient-Derived Pancreatic Ductal Adenocarcinoma Identifies Differentially Active Protein
Justin F Creeden1,2,3, Khaled Alganem1, Ali S Imami1
1Department of Neurosciences, College of Medicine and Life Sciences, University of Toledo, Toledo, OH 43614, USA.
Abstract:
Pancreatic cancer remains one of the most difficult malignancies to treat. Minimal improvements in patient outcomes and persistently abysmal patient survival rates underscore the great need for new treatment strategies. Currently, there is intense interest in therapeutic strategies that target tyrosine protein kinases. Here, we employed kinome arrays and bioinformatic pipelines capable of identifying differentially active protein tyrosine kinases in different patient-derived pancreatic ductal adenocarcinoma (PDAC) cell lines and wild-type pancreatic tissue to investigate the unique kinomic networks of PDAC samples and posit novel target kinases for pancreatic cancer therapy. Consistent with previously described reports, the resultant peptide-based kinome array profiles identified increased protein tyrosine kinase activity in pancreatic cancer for the following kinases: epidermal growth factor receptor (EGFR), fms related receptor tyrosine kinase 4/vascular endothelial growth factor receptor 3 (FLT4/VEGFR-3), insulin receptor (INSR), ephrin receptor A2 (EPHA2), platelet derived growth factor receptor alpha (PDGFRA), SRC proto-oncogene kinase (SRC), and tyrosine kinase non receptor 2 (TNK2). Furthermore, this study identified increased activity for protein tyrosine kinases with limited prior evidence of differential activity in pancreatic cancer. These protein tyrosine kinases include B lymphoid kinase (BLK), Fyn-related kinase (FRK), Lck/Yes-related novel kinase (LYN), FYN proto-oncogene kinase (FYN), lymphocyte cell-specific kinase (LCK), tec protein kinase (TEC), hemopoietic cell kinase (HCK), ABL proto-oncogene 2 kinase (ABL2), discoidin domain receptor 1 kinase (DDR1), and ephrin receptor A8 kinase (EPHA8). Together, these results support the utility of peptide array kinomic analyses in the generation of potential candidate kinases for future pancreatic cancer therapeutic development.
Insights
Pancreatic cancer (PDAC) research identified novel protein tyrosine kinases driving tumor growth. This study highlights new therapeutic targets for this difficult-to-treat malignancy.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Pancreatic cancer (PDAC) has poor patient outcomes, necessitating novel therapeutic strategies.
- Targeting protein tyrosine kinases is a promising avenue for cancer treatment.
- Identifying unique kinomic profiles in PDAC is crucial for developing new therapies.
Purpose of the Study:
- To identify differentially active protein tyrosine kinases in pancreatic cancer using kinome arrays.
- To uncover novel kinase targets for pancreatic cancer therapy.
Main Methods:
- Utilized kinome arrays and bioinformatic pipelines to analyze protein tyrosine kinase activity.
- Compared kinase activity in patient-derived PDAC cell lines and wild-type pancreatic tissue.
Main Results:
- Confirmed increased activity of known kinases like EGFR, FLT4/VEGFR-3, INSR, EPHA2, PDGFR-alpha, SRC, and TNK2 in PDAC.
- Identified novel kinases with increased activity in PDAC, including BLK, FRK, LYN, FYN, LCK, TEC, HCK, ABL2, DDR1, and EPHA8.
Conclusions:
- Peptide-based kinome array analysis is effective for identifying potential therapeutic kinase targets in PDAC.
- The study provides a list of novel candidate kinases for future pancreatic cancer drug development.
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