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Metformin and rapamycin have distinct effects on the AKT pathway and proliferation in breast cancer cells

机译:二甲双胍和雷帕霉素对AKT途径和乳腺癌细胞增殖具有明显的影响

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Rapamycin and its analogues inhibit mTOR, which leads to decreased protein synthesis and decreased cancer cell proliferation in many experimental systems. Adenosine 5′- monophosphate-activated protein kinase (AMPK) activators such as metformin have similar actions, in keeping with the TSC2/1 pathway linking activation of AMPK to inhibition of mTOR. As mTOR inhibition by rapamycin is associated with attenuation of negative feedback to IRS-1, rapamycin is known to increase activation of AKT, which may reduce its anti-neoplastic activity. We observed that metformin exposure decreases AKT activation, an action opposite to that of rapamycin. We show that metformin (but not rapamycin) exposure leads to increased phosphorylation of IRS-1 at Ser789, a site previously reported to inhibit downstream signaling and to be an AMPK substrate phosphorylated under conditions of cellular energy depletion. siRNA methods confirmed that reduction of AMPK levels attenuates both the IRS-1 Ser789 phosphorylation and the inhibition of AKT activation associated with metformin exposure. Although both rapamycin and metformin inhibit mTOR (the former directly and the latter through AMPK signaling), our results demonstrate previously unrecognized differences between these agents. The data are consistent with the observation that maximal induction of apoptosis and inhibition of proliferation are greater for metformin than rapamycin.
机译:雷帕霉素及其类似物抑制mTOR,在许多实验系统中导致蛋白质合成减少和癌细胞增殖减少。腺苷5'-一磷酸激活的蛋白激酶(AMPK)激活剂(如二甲双胍)具有与将AMPK激活与mTOR抑制作用联系起来的TSC2 / 1途径相同的作用。由于雷帕霉素对mTOR的抑制作用与对IRS-1负反馈的减弱有关,因此雷帕霉素可增加AKT的活化,从而可能降低其抗肿瘤活性。我们观察到二甲双胍暴露会降低AKT激活,这一作用与雷帕霉素相反。我们发现二甲双胍(而不是雷帕霉素)的暴露导致Ser 789 处IRS-1的磷酸化增加,该位点先前据报道抑制下游信号传导,并且是在细胞能量耗尽的条件下被磷酸化的AMPK底物。 siRNA方法证实,降低AMPK水平既可以减弱IRS-1 Ser 789 的磷酸化作用,也可以抑制与二甲双胍暴露相关的AKT活化。尽管雷帕霉素和二甲双胍均抑制mTOR(前者直接抑制后者,后者通过AMPK信号传导抑制后者),但我们的结果证明了以前这些药物之间无法识别的差异。数据与观察结果一致,即二甲双胍的最大凋亡诱导作用和增殖抑制作用比雷帕霉素更大。

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