Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Differential responsiveness to BRAF inhibitors of melanoma cell lines BRAF V600E-mutated

View through CrossRef
Abstract BACKGROUND. Most mutations in melanoma affect one critical amino acid on BRAF gene, resulting in the V600E substitution. Patient management is often based on the use of specific inhibitors targeting this mutation. METHODS. DNA and RNA mutation status were assessed in 15 melanoma cell lines by Sanger sequencing and RNA-seq. We tested the cell lines responsiveness to BRAF inhibitors (vemurafenib and PLX4720, BRAF-specific and sorafenib, BRAF non -specific). Cell proliferation was assessed by MTT colorimetric assay. BRAF V600E RNA expression was assessed by qPCR. Expression level of phosphorylated-ERK protein was assessed by Western Blotting as marker of BRAF activation.RESULTS. Three cell lines were discordant in the mutation detection (BRAF V600E at DNA level/Sanger sequencing and BRAF WT on RNA-seq). We initially postulated that those cell lines may express only the WT allele at the RNA level although mutated at the DNA level. A more careful analysis showed that they express low level of BRAF RNA and the expression may be in favor of the WT allele.We tested whether the discordant cell lines responded differently to BRAF-specific inhibitors. Their proliferation rate decreased after treatment with vemurafenib and PLX4720 but was not affected by sorafenib, suggesting a BRAF V600E biological behavior. Yet, responsiveness to the BRAF specific inhibitors was lower as compared to the control. Western Blot analysis revealed a decreased expression of p-ERK protein in the BRAF V600E control cell line and in the discordant cell lines upon treatment with BRAF-specific inhibitors. The discordant cell lines showed a lower responsiveness to BRAF inhibitors when compared to the BRAF V600E control cell line.The results obtained from the inhibition experiment and molecular analyses were also confirmed in three additional commercial cell lines.CONCLUSION. Cell lines carrying V600E mutations at the DNA level may respond differently to BRAF targeted treatment potentially due to a lower V600E RNA expression.
Title: Differential responsiveness to BRAF inhibitors of melanoma cell lines BRAF V600E-mutated
Description:
Abstract BACKGROUND.
Most mutations in melanoma affect one critical amino acid on BRAF gene, resulting in the V600E substitution.
Patient management is often based on the use of specific inhibitors targeting this mutation.
METHODS.
DNA and RNA mutation status were assessed in 15 melanoma cell lines by Sanger sequencing and RNA-seq.
We tested the cell lines responsiveness to BRAF inhibitors (vemurafenib and PLX4720, BRAF-specific and sorafenib, BRAF non -specific).
Cell proliferation was assessed by MTT colorimetric assay.
BRAF V600E RNA expression was assessed by qPCR.
Expression level of phosphorylated-ERK protein was assessed by Western Blotting as marker of BRAF activation.
RESULTS.
Three cell lines were discordant in the mutation detection (BRAF V600E at DNA level/Sanger sequencing and BRAF WT on RNA-seq).
We initially postulated that those cell lines may express only the WT allele at the RNA level although mutated at the DNA level.
A more careful analysis showed that they express low level of BRAF RNA and the expression may be in favor of the WT allele.
We tested whether the discordant cell lines responded differently to BRAF-specific inhibitors.
Their proliferation rate decreased after treatment with vemurafenib and PLX4720 but was not affected by sorafenib, suggesting a BRAF V600E biological behavior.
Yet, responsiveness to the BRAF specific inhibitors was lower as compared to the control.
Western Blot analysis revealed a decreased expression of p-ERK protein in the BRAF V600E control cell line and in the discordant cell lines upon treatment with BRAF-specific inhibitors.
The discordant cell lines showed a lower responsiveness to BRAF inhibitors when compared to the BRAF V600E control cell line.
The results obtained from the inhibition experiment and molecular analyses were also confirmed in three additional commercial cell lines.
CONCLUSION.
Cell lines carrying V600E mutations at the DNA level may respond differently to BRAF targeted treatment potentially due to a lower V600E RNA expression.

Related Results

Differential responsiveness to BRAF inhibitors of melanoma cell lines BRAF V600E-mutated
Differential responsiveness to BRAF inhibitors of melanoma cell lines BRAF V600E-mutated
Abstract Most mutations in melanoma affect one critical amino acid on BRAF gene, resulting in the V600E substitution. Patient management is often based on the use of specif...
A multi-center cross-sectional investigation of BRAF V600E mutation in Ameloblastoma
A multi-center cross-sectional investigation of BRAF V600E mutation in Ameloblastoma
Background B-Raf proto-oncogene, serine/threonine kinase (BRAF) V600E mutation stands as a pivotal genetic alteration strongly associated with several neoplasms and ...
Can detection of Braf p.V600E mutation be improved? Comparison of allele specific multiplex sequencing to present tests
Can detection of Braf p.V600E mutation be improved? Comparison of allele specific multiplex sequencing to present tests
Objective: This is an investigative study to evaluate a new companion diagnostic platform, allele specific multiplex sequencing(ASMS). Detection of Braf p.V600E from solid tumors i...
The Correlation of BRAF V600E Expressions with Histopathological Variant and Lymphocyte Infiltration in Papillary Thyroid Carcinoma
The Correlation of BRAF V600E Expressions with Histopathological Variant and Lymphocyte Infiltration in Papillary Thyroid Carcinoma
BackgroundPapillary thyroid carcinoma is the most common endocrine gland malignancy that has the highest incidence rate of 60-80%. In papillarythyroid carcinoma BRAF V600E mutation...
Clinical characteristics and treatment outcomes of 65 patients with BRAF-mutated non-small cell lung cancer (NSCLC).
Clinical characteristics and treatment outcomes of 65 patients with BRAF-mutated non-small cell lung cancer (NSCLC).
e21745 Background: BRAF mutations are infrequently seen in non-small cell lung cancer (NSCLC) in Chinese population. We aimed to investigate the clinicopathologic characteristics ...
Abstract 1627: PHI-501, a novel and potent pan-RAF inhibitor in metastatic melanoma
Abstract 1627: PHI-501, a novel and potent pan-RAF inhibitor in metastatic melanoma
Abstract Background: PHI-501 has been developed as a novel inhibitor of NRAS mutated acute myeloid leukemia. Big data and artificial intelligence (AI)-based drug dis...

Back to Top