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Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
Small molecule inhibition of FOXM1: How to bring a novel compound into genomic context
Giovanni Marsico1, Michael V Gormally1
1Cancer Research UK, Cambridge Institute, Li Ka Shing Centre, Cambridge CB2 0RE, UK.
Abstract:
Deregulation of transcription factor (TF) networks is emerging as a major pathogenic event in many human cancers (Darnell, 2002 [1]; Libermann and Zerbini, 2006 [2]; Laoukili et al., 2007 [3]). Small molecule intervention is an attractive avenue to understand TF regulatory mechanisms in healthy and disease state, as well as for exploiting these targets therapeutically (Koehler et al., 2003 [4]; Berg, 2008 [5]; Koehler, 2010 [6]). However, because of their physico-chemical properties, TF targeting has been proven to be difficult (Verdine and Walensky, 2007 [7]). The TF FOXM1 is an important mitotic player (Wonsey and Follettie, 2005 [8]; Laoukili et al., 2005 [9]; McDonald, 2005 [10]) also implicated in cancer progression (Laoukili et al., 2007 [3]; Teh, 2011 [11]; Koo, 2012 [12]) and drug resistance development (Kwok et al., 2010 [13]; Carr et al., [14]). Therefore, its inhibition is an attractive goal for cancer therapy. Here, we describe a computational biology approach, by giving detailed insights into methodologies and technical results, which was used to analyze the transcriptional RNA-Seq data presented in our previous work (Gormally et al., 2014 [20]). Our Bioinformatics analysis shed light on the cellular effect of a novel FOXM1 inhibitor (FDI-6) newly identified through a biophysical screen. The data for this report is available at the public GEO repository (accession number http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE58626).
Insights
Transcription factor (TF) networks are key in cancer. This study uses bioinformatics to analyze a novel FOXM1 inhibitor (FDI-6), revealing its cellular effects and potential for cancer therapy.
Area of Science:
- Oncology
- Bioinformatics
- Molecular Biology
Background:
- Transcription factor (TF) network deregulation is a significant pathogenic event in human cancers.
- Targeting TFs therapeutically is challenging due to their physicochemical properties.
- FOXM1, a key mitotic regulator, is implicated in cancer progression and drug resistance.
Purpose of the Study:
- To investigate the cellular effects of a novel FOXM1 inhibitor (FDI-6).
- To analyze RNA-Seq data using a computational biology approach.
- To provide insights into TF regulatory mechanisms for potential cancer therapy.
Main Methods:
- Computational biology approach
- Analysis of transcriptional RNA-Seq data
- Bioinformatics analysis of a novel FOXM1 inhibitor (FDI-6)
Main Results:
- The study provides detailed insights into methodologies and technical results.
- Bioinformatics analysis shed light on the cellular effect of FDI-6.
- Data is available at the public GEO repository (GSE58626).
Conclusions:
- Inhibiting FOXM1 is an attractive goal for cancer therapy.
- The computational biology approach offers insights into TF inhibition.
- FDI-6 shows potential as a therapeutic agent targeting FOXM1.
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