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Home › Dataset Library › Analysis of A375 and A375 clones that acquired resistance to GSK2118436 after treatment with GSK2118436 (GSK436), GSK1120212 (GSK212), or...

Dataset: Analysis of A375 and A375 clones that acquired resistance to GSK2118436 after treatment with GSK2118436 (GSK436), GSK1120212 (GSK212), or the combination of GSK2118436 and GSK1120212 for 24 hour

In an effort to understand the mechanisms of acquired resistance to BRAF inhibitors, we isolated clones that acquired resistance to the...

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In an effort to understand the mechanisms of acquired resistance to BRAF inhibitors, we isolated clones that acquired resistance to the BRAF inhibitor GSK2118436 derived from the A375 BRAF V600E mutant melanoma cell line. This resistance clones acquired mutations in NRAS and MEK1. One clones, 16R6-4, acquired two mutations in NRAS – Q61K and A146T. Proliferation and western blot analyses demonstrated that these clones were insensitive to single agent GSK2118436 or GSK1120212 (an allosteric MEK inhibitor) but were sensitive to the combination of GSK2118436 and GSK1120212. To further characterize this combination, global transcriptomic analysis was performed in A375 and 16R6-4 after 24 hour treatment with GSK2118436, GSK1120212 or the combination of GSK2118436 and GSK1120212. This data set was published in Molecular Cancer Therapeutics with the title “Combined inhibition of BRAF and MEK, BRAF and PI3K/mTOR, or MEK and PI3K/mTOR overcomes acquired resistance to the BRAF inhibitor GSK2118436, mediated by NRAS or MEK mutations” by Greger, J.G., et.al. A375 and 16R6-4 (an A375 derived GSK2118436 resistance clone) were treated for 24 hours with 0.1 micromolar GSK2118436, 1 micromolar GSK2118436, 0.01 micromolar GSK1120212, 0.1 micromolar GSK2118436 + 0.01 micromolar GSK1120212, or 1 micromolar GSK2118436 + 0.01 micromolar GSK1120212.

Species:
human

Samples:
38

Source:
E-GEOD-35230

Updated:
Dec.12, 2014

Registered:
Sep.19, 2014


Factors: (via ArrayExpress)
Sample TREATMENT CELL TYPE
GSM864257 DMSO Parental cells
GSM864257 DMSO Parental cells
GSM864259 0.1 uM GSK436 Parental cells
GSM864259 0.1 uM GSK436 Parental cells
GSM86426 1 uM GSK436 Parental cells
GSM86426 1 uM GSK436 Parental cells
GSM864263 10 nM GSK212 Parental cells
GSM864263 10 nM GSK212 Parental cells
GSM864263 10 nM GSK212 Parental cells
GSM864266 30 nM GSK212 Parental cells
GSM864266 30 nM GSK212 Parental cells
GSM864268 10 nM GSK212 + 0.1 uM GSK436 Parental cells
GSM864268 10 nM GSK212 + 0.1 uM GSK436 Parental cells
GSM864268 10 nM GSK212 + 0.1 uM GSK436 Parental cells
GSM86427 10 nM GSK212 + 1 uM GSK436 Parental cells
GSM86427 10 nM GSK212 + 1 uM GSK436 Parental cells
GSM86427 10 nM GSK212 + 1 uM GSK436 Parental cells
GSM864274 DMSO GSK436 resistant clone
GSM864274 DMSO GSK436 resistant clone
GSM864276 0.1 uM GSK436 GSK436 resistant clone
GSM864276 0.1 uM GSK436 GSK436 resistant clone
GSM864276 0.1 uM GSK436 GSK436 resistant clone
GSM864279 1 uM GSK436 GSK436 resistant clone
GSM864279 1 uM GSK436 GSK436 resistant clone
GSM864279 1 uM GSK436 GSK436 resistant clone
GSM864282 10 nM GSK212 GSK436 resistant clone
GSM864282 10 nM GSK212 GSK436 resistant clone
GSM864282 10 nM GSK212 GSK436 resistant clone
GSM864285 30 nM GSK212 GSK436 resistant clone
GSM864285 30 nM GSK212 GSK436 resistant clone
GSM864285 30 nM GSK212 GSK436 resistant clone
GSM864288 10 nM GSK212 + 0.1 uM GSK436 GSK436 resistant clone
GSM864288 10 nM GSK212 + 0.1 uM GSK436 GSK436 resistant clone
GSM864288 10 nM GSK212 + 0.1 uM GSK436 GSK436 resistant clone
GSM86429 10 nM GSK212 + 1 uM GSK436 GSK436 resistant clone
GSM86429 10 nM GSK212 + 1 uM GSK436 GSK436 resistant clone
GSM86429 10 nM GSK212 + 1 uM GSK436 GSK436 resistant clone
GSM864257 DMSO Parental cells

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  • cell
  • line
  • melanoma

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