Related Experiment Video
Updated: Aug 7, 2026

Identification of Kinase-substrate Pairs Using High Throughput Screening
Published on: August 29, 2015
Kinase analysis of penile squamous cell carcinoma on multiple platforms to identify potential therapeutic targets
Eddy S Yang1, Christopher D Willey1, Amitkumar Mehta2
1Department of Radiation Oncology, University of Alabama, Birmingham (UAB), Birmingham, Alabama, USA.
Abstract:
Penile squamous cell carcinoma (PSCC) is an orphan malignancy with poorly understood biology and suboptimal systemic therapy. Given that kinases may be drivers and readily actionable, we performed comprehensive multiplatform analysis of kinases in PSCC tumor and normal tissue. Fresh frozen tumors were collected from 11 patients with PSCC. After macrodissection to demarcate tumor from normal tissue, the samples underwent multiplatform analysis of kinases. Next Generation Sequencing (NGS) of 517 kinase genes was performed using Agilent Kinome capture and run on the Illumina MiSeq at PE150bp. The NanoString nCounter® platform analyzed the expression of 519 kinase genes. Kinase activity of tissue lysates was measured using PamStation®12 high-content phospho-peptide substrate microarray system. Network mapping was done with GeneGo MetaCore™ and upstream kinase prediction was performed with BioNavigator and the Kinexus database. Ingenuity pathway analysis was performed to integrate elevated kinase activity and gene over-expression with coexisting missense mutations at DNA level. Top pathways upregulated in both the kinase activity and gene expression platforms were PTEN, STAT3, GNRH, IL-8 and B cell receptor signaling. Potentially relevant missense mutations were seen in 176 kinase genes, with the top altered pathways overlapping with gene overexpression being GNRH, NF-kB and STAT3 signaling. ERBB2, ERBB3 and SYK were altered on NGS and also exhibited elevated kinase activity. To summarize, multiplatform comprehensive analysis of kinases discovered potential drivers of PSCC and actionable therapeutic targets. Translational studies are necessary to validate the functional relevance of our data to make advances in this rare malignancy.
Insights
Comprehensive multiplatform analysis of kinases in penile squamous cell carcinoma (PSCC) identified potential drivers and actionable therapeutic targets. Further translational studies are needed to validate these findings for advancing treatment in this rare cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Penile squamous cell carcinoma (PSCC) is a rare cancer with limited understanding of its molecular drivers and few effective systemic therapies.
- Kinases are crucial signaling molecules that can be targeted therapeutically, making them important targets for PSCC research.
Purpose of the Study:
- To conduct a comprehensive multiplatform analysis of kinases in PSCC tumor and normal tissues.
- To identify potential kinase-driven pathways and actionable therapeutic targets for PSCC.
Main Methods:
- Multiplatform analysis including Next Generation Sequencing (NGS) of kinase genes, NanoString gene expression profiling, and kinase activity assays (PamStation®12).
- Bioinformatic analyses including network mapping, upstream kinase prediction, and Ingenuity Pathway Analysis (IPA) to integrate multi-omic data.
- Analysis of missense mutations in kinase genes and correlation with gene overexpression and elevated kinase activity.
Main Results:
- Top upregulated pathways in both kinase activity and gene expression included PTEN, STAT3, GNRH, IL-8, and B cell receptor signaling.
- Missense mutations were identified in 176 kinase genes, with GNRH, NF-kB, and STAT3 signaling pathways overlapping with gene overexpression.
- ERBB2, ERBB3, and SYK kinases showed alterations via NGS and exhibited increased activity.
Conclusions:
- Multiplatform kinase analysis reveals potential drivers and therapeutic targets for penile squamous cell carcinoma.
- Identified kinases and pathways warrant further investigation in translational studies to improve PSCC treatment strategies.

