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Resistance to BRAF Inhibition in BRAF-Mutant Colon Cancer Can Be Overcome with PI3K Inhibition or Demethylating Agents

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TLDR
It is shown that activation of the PI3K/AKT pathway is a mechanism of both innate and acquired resistance to BRAF inhibitors in BRAFV600E CRC and suggest combinatorial approaches to improve outcomes in this poor prognosis subset of patients.
Abstract
Purpose: Vemurafenib, a selective inhibitor of BRAF V600 , has shown significant activity in BRAF V600 melanoma but not in less than 10% of metastatic BRAF V600 colorectal cancers (CRC), suggesting that studies of the unique hypermethylated phenotype and concurrent oncogenic activation of BRAF mut CRC may provide combinatorial strategies. Experimental Design: We conducted comparative proteomic analysis of BRAF V600E melanoma and CRC cell lines, followed by correlation of phosphoinositide 3-kinase (PI3K) pathway activation and sensitivity to the vemurafenib analogue PLX4720. Pharmacologic inhibitors and siRNA were used in combination with PLX4720 to inhibit PI3K and methyltransferase in cell lines and murine models. Results: Compared with melanoma, CRC lines show higher levels of PI3K/AKT pathway activation. CRC cell lines with mutations in PTEN or PIK3CA were less sensitive to growth inhibition by PLX4720 ( P = 0.03), and knockdown of PTEN expression in sensitive CRC cells reduced growth inhibition by the drug. Combined treatment of PLX4720 with PI3K inhibitors caused synergistic growth inhibition in BRAF-mutant CRC cells with both primary and secondary resistance. In addition, methyltransferase inhibition was synergistic with PLX4720 and decreased AKT activation. In vivo , PLX4720 combined with either inhibitors of AKT or methyltransferase showed greater tumor growth inhibition than PLX4720 alone. Clones with acquired resistance to PLX4720 in vitro showed PI3K/AKT activation with EGF receptor (EGFR) or KRAS amplification. Conclusions: We show that activation of the PI3K/AKT pathway is a mechanism of both innate and acquired resistance to BRAF inhibitors in BRAF V600E CRC and suggest combinatorial approaches to improve outcomes in this poor prognosis subset of patients. Clin Cancer Res; 19(3); 657–67. ©2012 AACR .

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Journal ArticleDOI

Strategies to overcome resistance to epidermal growth factor receptor monoclonal antibody therapy in metastatic colorectal cancer.

TL;DR: Diverse approaches to overcome the problem of resistance to existing anti-EGFR therapies and potential future directions for cancer therapies related to the mutational status of genes associated with EGFR-Ras-ERK and PI3K signalings are discussed.
Journal ArticleDOI

Cancer In Silico Drug Discovery: A Systems Biology Tool for Identifying Candidate Drugs to Target Specific Molecular Tumor Subtypes

TL;DR: CiDD facilitates phenotype-driven, systematic drug discovery based on clinical and molecular data from TCGA, and was applied to identify candidate drugs to treat colorectal cancers harboring mutations in BRAF.
Journal ArticleDOI

Development of small-molecule therapeutics and strategies for targeting RAF kinase in BRAF-mutant colorectal cancer.

TL;DR: The existing mechanism of RAF kinases in CRC, including MAPK feedback reactivation of resistance to RAF inhibitors, is summarized and the development of three generations of RAF inhibitors and different therapeutic strategies including the combination of EGFR, BRAF, and PI3K inhibitors for BRAFm CRC treatment is summarized.
Journal ArticleDOI

Vemurafenib and panitumumab combination tailored therapy in BRAF-mutated metastatic colorectal cancer: A case report

TL;DR: The first clinical evidence that the combination of an anti-EGFR (panitumumab) and an inhibitor of BRAFV600E (vemurafenib) is well tolerated and results in a strong disease control in an extensively pretreated mCRC patient is reported.
Journal ArticleDOI

JQ-1 Inhibits Colon Cancer Proliferation via Suppressing Wnt/β-Catenin Signaling and miR-21.

TL;DR: It is revealed that the mechanism of JQ-1 action is associated with its regulation of Wnt/β-catenin signaling and miR-21 levels, which is effective in inhibiting colon cancer.
References
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Journal ArticleDOI

Quantitative analysis of dose-effect relationships: the combined effects of multiple drugs or enzyme inhibitors

TL;DR: A generalized method for analyzing the effects of multiple drugs and for determining summation, synergism and antagonism has been proposed and has been used to analyze experimental data obtained from enzymatic, cellular and animal systems.
Journal ArticleDOI

Mechanism of Activation of the Raf-Erk Signaling Pathway by Oncogenic Mutations of B-Raf

TL;DR: The high activity mutants signal to ERK by directly phosphorylating MEK, whereas the impaired activity mutants stimulate MEK by activating endogenous C-RAF, possibly via an allosteric or transphosphorylation mechanism.
Journal ArticleDOI

Melanomas acquire resistance to B-RAF(V600E) inhibition by RTK or N-RAS upregulation

TL;DR: It is shown that melanomas escape B-RAF(V600E) targeting not through secondary B-RF(V 600E) mutations but via receptor tyrosine kinase (RTK)-mediated activation of alternative survival pathway(s) or activated RAS-mediated reactivation of the MAPK pathway, suggesting additional therapeutic strategies.
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