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Updated: Feb 18, 2026

A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
Comprehensive pancancer genomic analysis reveals (RTK)-RAS-RAF-MEK as a key dysregulated pathway in cancer: Its
Robin Imperial1, Omer M Toor2, Arif Hussain3
1Department of Medicine, University of Missouri Kansas City School of Medicine, Kansas City, MO 64108, USA.
Abstract:
Recent advances in Next Generation Sequencing (NGS) have provided remarkable insights into the genomic characteristics of human cancers that have spurred a revolution in the field of oncology. The mitogen-activated protein kinase pathway (MAPK) and its activating cell receptor, the receptor tyrosine kinases (RTKs), which together encompass the (RTK)-RAS-RAF-MEK-ERK axis, are central to oncogenesis. A pan-cancer genomics analysis presented in this review is made possible by large collaborative projects, including The Cancer Genome Atlas (TCGA), the International Cancer Genome Consortium (ICGC), and others. Landmark studies contributing to these projects have revealed alterations in cell signaling cascades that vary between cancer types and within tumors themselves. We review several of these studies in major tumor types to highlight recent advances in our understanding of the role of (RTK)-RAS-RAF alterations in cancer. Further studies are needed to increase the statistical power to detect clinically relevant low-frequency mutations, in addition to the known (RTK)-RAS-RAF pathway alterations, and to refine the resolution of the genomic landscape that defines these cancer mutations. The (RTK)-RAS-RAF-MEK-ERK mutation status, and their prognostic value, are also examined and correlated with clinical phenotypes. Treatments targeting various components of this pathway are ongoing, and are often effective initially in defined subgroups of patients. However, resistance to these agents can develop through adaptive mechanisms. With our steady increase in understanding the molecular biology of cancer, ongoing evaluation and monitoring through genomic analysis will continue to provide important information to the clinician in the context of treatment selection, response, resistance and outcomes.
Insights
Next Generation Sequencing (NGS) reveals critical (RTK)-RAS-RAF-MEK-ERK pathway alterations in human cancers. Understanding these genomic changes and resistance mechanisms is key for effective cancer treatment selection and outcomes.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Next Generation Sequencing (NGS) has revolutionized cancer genomics.
- The (RTK)-RAS-RAF-MEK-ERK pathway is central to oncogenesis.
- Genomic alterations in this pathway vary across cancer types.
Purpose of the Study:
- To review recent advances in understanding (RTK)-RAS-RAF alterations in major tumor types.
- To examine the prognostic value of (RTK)-RAS-RAF-MEK-ERK mutation status.
- To discuss treatment strategies and resistance mechanisms.
Main Methods:
- Pan-cancer genomics analysis using data from TCGA and ICGC.
- Review of landmark studies on (RTK)-RAS-RAF pathway alterations.
- Correlation of mutation status with clinical phenotypes.
Main Results:
- Identified diverse (RTK)-RAS-RAF pathway alterations across cancer types.
- Examined the prognostic significance of (RTK)-RAS-RAF-MEK-ERK mutations.
- Highlighted initial treatment efficacy and subsequent resistance development.
Conclusions:
- Genomic analysis provides crucial insights for cancer treatment selection, response, and resistance monitoring.
- Further studies are needed to detect low-frequency mutations and refine genomic landscape resolution.
- Ongoing evaluation of molecular biology is essential for improving patient outcomes.
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