首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Knockdown of insulin receptor substrate 1 reduces proliferation and downregulates Akt/mTOR and MAPK pathways in K562 cells.
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Knockdown of insulin receptor substrate 1 reduces proliferation and downregulates Akt/mTOR and MAPK pathways in K562 cells.

机译:胰岛素受体底物1的抑制降低K562细胞中的增殖并下调Akt / mTOR和MAPK途径。

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摘要

BCR-ABL kinase activates downstream signaling pathways, including the PI3K-Akt/mTOR and the MAPK pathway. IRS1 has been previously described as constitutively phosphorylated and associated with BCR-ABL in K562 cells, suggesting that IRS1 has role in the BCR-ABL signaling pathways. In this study, we analyzed the effect of IRS1 silencing, by shRNA-lentiviral delivery, in K562 cells, a CML cell line that presents the BCR-ABL. IRS1 silencing decreased cell proliferation and colony formation in K562 cells, which correlates with the delay of these cells at the G0/G1 phase and a decrease in the S phase of the cell cycle. Furthermore, IRS1 silencing in K562 cells resulted in a decrease of Akt, P70S6K and ERK1/2 phosphorylation. Nevertheless, apoptosis was unaffected by IRS1 knockdown and no alterations were found in the phosphorylation of BAD and in the expression of BCL2 and BAX. BCR-ABL and CRKL phosphorylation levels remained unaffected upon IRS1 silencing, and no synergistic effect was observed with imatinib treatment and IRS1 knockdown, indicating that IRS1 is downstream from BCR-ABL. In conclusion, we demonstrated that inhibition of IRS1 is capable of inducing the downregulation of Akt/mTOR and MAPK pathways and further decreasing proliferation, and clonogenicity and induces to cell cycle delay at G0/G1 phase in BCR-ABL cells.
机译:BCR-ABL激酶激活下游信号传导途径,包括PI3K-Akt / mTOR和MAPK途径。 IRS1先前已被描述为在K562细胞中被组成型磷酸化并与BCR-ABL相关,这表明IRS1在BCR-ABL信号通路中具有作用。在这项研究中,我们分析了通过shRNA慢病毒递送IRS1沉默在K562细胞(一种呈现BCR-ABL的CML细胞)中的作用。 IRS1沉默降低K562细胞中的细胞增殖和集落形成,这与这些细胞在G0 / G1期的延迟和S期细胞周期的减少有关。此外,IRS1在K562细胞中的沉默导致Akt,P70S6K和ERK1 / 2磷酸化的降低。尽管如此,细胞凋亡不受IRS1敲低的影响,在BAD的磷酸化以及BCL2和BAX的表达中未发现任何改变。 BCR-ABL和CRKL的磷酸化水平仍然不受IRS1沉默的影响,并且在伊马替尼治疗和IRS1抑制下均未观察到协同作用,表明IRS1位于BCR-ABL的下游。总之,我们证明了抑制IRS1能够诱导Akt / mTOR和MAPK通路的下调,并进一步降低BCR-ABL细胞中G0 / G1期的增殖,克隆性并诱导细胞周期延迟。

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