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首页> 外文期刊>Oncogene >Colorectal cancer cells with the BRAFV600E mutation are addicted to the ERK1|[sol]|2 pathway for growth factor-independent survival and repression of BIM
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Colorectal cancer cells with the BRAFV600E mutation are addicted to the ERK1|[sol]|2 pathway for growth factor-independent survival and repression of BIM

机译:具有Brafv600e突变的结肠直肠癌细胞对ERK1 | [溶胶] | 2途径沉迷于ERK1 | 2途径,用于生长因子 - 独立于生长的生存和抑制BIM

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The RAF–mitogen-activated protein kinase kinase 1/2–extracellular signal-regulated kinase 1/2 (RAF–MEK1/2–ERK1/2) pathway is activated in many human tumours and can protect cells against growth factor deprivation; however, most such studies have relied upon overexpression of RAF or MEK constructs that are not found in tumours. Here we show that expression of the endogenous BRAFV600E allele in mouse embryonic fibroblasts from conditional knock-in transgenic mice activates ERK1/2, represses the BH3-only protein BIM and protects cells from growth factor withdrawal. Human colorectal cancer (CRC) cell lines harbouring BRAFV600E are growth factor independent for the activation of ERK1/2 and survival. However, treatment with the MEK1/2 inhibitors U0126, PD184352 or the novel clinical candidate AZD6244 (ARRY-142886) overcomes growth factor independence, causing CRC cell death. BIM is de-phosphorylated and upregulated following MEK1/2 inhibition in all CRC cell lines studied and knockdown of BIM reduces cell death, indicating that repression of BIM is a major part of the ability of BRAFV600E to confer growth factor-independent survival. We conclude that a single endogenous BRAFV600E allele is sufficient to repress BIM and prevent death arising from growth factor withdrawal, and CRC cells with BRAFV600E mutations are addicted to the ERK1/2 pathway for repression of BIM and growth factor-independent survival.
机译:在许多人肿瘤中激活Raf-丝裂引起的蛋白激酶激酶1/2(RAF-MEK1 / 2-ERK1 / 2)途径,可以保护细胞免受生长因子剥夺的影响;然而,大多数此类研究依赖于在肿瘤中未发现的RAF或MEK构建体的过度表达。在这里,我们表明,来自条件敲入的转基因小鼠的小鼠胚胎成纤维细胞中的内源性Brafv600e等位基因的表达激活ERK1 / 2,抑制了BH3蛋白质BIM并保护细胞免受生长因子戒断。患Brafv600E的人结肠直肠癌(CRC)细胞系是生长因子,无论是激活ERK1 / 2和生存率。然而,用MEK1 / 2抑制剂U0126,PD184352或新型临床候选AZD6244(Arry-142886)的处理克服了生长因子的独立性,导致CRC细胞死亡。 BIM在所有CRC细胞系中进行脱磷酸化并上调,在所有CRC细胞系中抑制并敲击BIM减少了细胞死亡,表明BIM的抑制是BRAFV600E赋予生长因子互动的能力的主要部分。我们得出结论,单一内源性BRAFV600E等位基因足以抑制BIM并防止生长因子戒断引起的死亡,并且具有BRAFV600E突变的CRC细胞沉迷于ERK1 / 2途径,以抑制BIM和生长因子依赖性生存。

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