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Updated: May 20, 2026

Identification of Kinase-substrate Pairs Using High Throughput Screening
Published on: August 29, 2015
Identification of kinases regulating prostate cancer cell growth using an RNAi phenotypic screen
Hilary Whitworth1, Shriti Bhadel, Melissa Ivey
1Department of Microbiology, University of Virginia, Charlottesville, Virginia, United States of America.
Abstract:
As prostate cancer progresses to castration-resistant disease, there is an increase in signal transduction activity. Most castration-resistant prostate tumors continue to express the androgen receptor (AR) as well as androgen-responsive genes, despite the near absence of circulating androgen in these patients. The AR is regulated not only by its cognate steroid hormone, but also by interactions with a constellation of co-regulatory and signaling molecules. Thus, the elevated signaling activity that occurs during progression to castration resistance can affect prostate cancer cell growth either through the AR or independent of the AR. In order to identify signaling pathways that regulate prostate cancer cell growth, we screened a panel of shRNAs targeting 673 human kinases against LNCaP prostate cancer cells grown in the presence and absence of hormone. The screen identified multiple shRNA clones against known and novel gene targets that regulate prostate cancer cell growth. Based on the magnitude of effect on growth, we selected six kinases for further study: MAP3K11, DGKD, ICK, CIT, GALK2, and PSKH1. Knockdown of these kinases decreased cell growth in both androgen-dependent and castration-resistant prostate cancer cells. However, these kinases had different effects on basal or androgen-induced transcriptional activity of AR target genes. MAP3K11 knockdown most consistently altered transcription of AR target genes, suggesting that MAP3K11 affected its growth inhibitory effect by modulating the AR transcriptional program. Consistent with MAP3K11 acting on the AR, knockdown of MAP3K11 inhibited AR Ser 650 phosphorylation, further supporting stress kinase regulation of AR phosphorylation. This study demonstrates the applicability of lentiviral-based shRNA for conducting phenotypic screens and identifies MAP3K11, DGKD, ICK, CIT, GALK2, and PSKH1 as regulators of prostate cancer cell growth. The thorough evaluation of these kinase targets will pave the way for developing more effective treatments for castration-resistant prostate cancer.
Insights
Researchers identified six key kinases, including MAP3K11, that regulate prostate cancer cell growth. Targeting these kinases, particularly MAP3K11, shows promise for treating castration-resistant prostate cancer by modulating the androgen receptor pathway.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- Prostate cancer progression to castration-resistant disease involves increased signal transduction activity.
- Castration-resistant prostate tumors often maintain androgen receptor (AR) expression and activity despite low androgen levels.
- AR activity is modulated by hormones and co-regulatory/signaling molecules, impacting cancer cell growth.
Purpose of the Study:
- To identify signaling pathways regulating prostate cancer cell growth.
- To screen for kinases involved in both androgen-dependent and castration-resistant prostate cancer.
- To investigate the role of specific kinases in AR signaling and prostate cancer progression.
Main Methods:
- Phenotypic screening of 673 human kinases using lentiviral-based shRNA in LNCaP prostate cancer cells.
- Cell growth assays in the presence and absence of hormone.
- Analysis of AR transcriptional activity and AR Ser 650 phosphorylation following kinase knockdown.
Main Results:
- Six kinases (MAP3K11, DGKD, ICK, CIT, GALK2, PSKH1) were identified as regulators of prostate cancer cell growth.
- Knockdown of these kinases reduced cell growth in both androgen-dependent and castration-resistant models.
- MAP3K11 knockdown significantly altered AR target gene transcription and inhibited AR Ser 650 phosphorylation, suggesting AR pathway modulation.
Conclusions:
- Lentiviral shRNA screening is effective for identifying growth regulators in prostate cancer.
- MAP3K11, DGKD, ICK, CIT, GALK2, and PSKH1 are key regulators of prostate cancer cell proliferation.
- MAP3K11's role in modulating the AR pathway presents a potential therapeutic target for castration-resistant prostate cancer.
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