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Updated: Mar 3, 2026

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
The landscape of BRAF transcript and protein variants in human cancer
Andrea Marranci1,2, Zhijie Jiang3, Marianna Vitiello1,4
1Oncogenomics Unit, Core Research Laboratory, Istituto Toscano Tumori (ITT), AOUP, CNR-IFC, Via Moruzzi 1, 56124, Pisa, Italy.
Background:
The BRAF protein kinase is widely studied as a cancer driver and therapeutic target. However, the regulation of its expression is not completely understood.
Results:
Taking advantage of the RNA-seq data of more than 4800 patients belonging to 9 different cancer types, we show that BRAF mRNA exists as a pool of 3 isoforms (reference BRAF, BRAF-X1, and BRAF-X2) that differ in the last part of their coding sequences, as well as in the length (BRAF-ref: 76 nt; BRAF-X1 and BRAF-X2: up to 7 kb) and in the sequence of their 3'UTRs. The expression levels of BRAF-ref and BRAF-X1/X2 are inversely correlated, while the most prevalent among the three isoforms varies from cancer type to cancer type. In melanoma cells, the X1 isoform is expressed at the highest level in both therapy-naïve cells and cells with acquired resistance to vemurafenib driven by BRAF gene amplification or expression of the Δ[3-10] splicing variant. In addition to the BRAF-ref protein, the BRAF-X1 protein (the full length as well as the Δ[3-10] variant) is also translated. The expression levels of the BRAF-ref and BRAF-X1 proteins are similar, and together they account for BRAF functional activities. In contrast, the endogenous BRAF-X2 protein is hard to detect because the C-terminal domain is selectively recognized by the ubiquitin-proteasome pathway and targeted for degradation.
Conclusions:
By shedding light on the repertoire of BRAF mRNA and protein variants, and on the complex regulation of their expression, our work paves the way to a deeper understanding of a crucially important player in human cancer and to a more informed development of new therapeutic strategies.
Insights
This study reveals three BRAF mRNA isoforms with distinct 3'UTRs, impacting cancer. BRAF-X1 protein is highly expressed in melanoma, even with drug resistance, contributing to BRAF activity.
Area of Science:
- Molecular Biology
- Cancer Research
- Genomics
Background:
- The BRAF protein kinase is a critical cancer driver and therapeutic target.
- Understanding BRAF expression regulation is crucial for cancer therapy.
Purpose of the Study:
- To investigate the complexity of BRAF mRNA and protein variants.
- To elucidate the regulation of BRAF expression in various cancer types.
Main Methods:
- Analysis of RNA-sequencing data from over 4800 patients across 9 cancer types.
- Identification and characterization of BRAF mRNA isoforms and their 3'UTRs.
- Investigation of protein translation and degradation pathways.
Main Results:
- Identified three BRAF mRNA isoforms (BRAF-ref, BRAF-X1, BRAF-X2) with varying 3'UTR lengths and sequences.
- Observed inverse correlation between BRAF-ref and BRAF-X1/X2 expression, with prevalence varying by cancer type.
- Found high BRAF-X1 expression in melanoma, including therapy-resistant cases, and identified BRAF-X1 protein translation; BRAF-X2 protein is degraded by the ubiquitin-proteasome system.
Conclusions:
- The study illuminates the repertoire of BRAF mRNA and protein variants.
- Provides insights into the complex regulation of BRAF expression.
- Paves the way for a deeper understanding of BRAF in cancer and informs the development of new therapeutic strategies.
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