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AMPK-mediated autophagy is a survival mechanism in androgen-dependent prostate cancer cells subjected to androgen deprivation and hypoxia

机译:AMPK介导的自噬是雄激素依赖和缺氧的雄激素依赖性前列腺癌细胞的生存机制。

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The present study was designed to investigate (i) the role of AMPK activation in inducing autophagy in androgen-dependent prostate cancer cells subjected to androgen deprivation and hypoxia, and (ii) whether autophagy offers a survival advantage under these harsh conditions. Low androgen and low oxygen are two co-existing conditions frequently found in prostate cancer tissue following surgical or medical castration. In LNCaP cells, androgen deprivation and hypoxia together boosted AMPK activation to a higher level than that seen with either condition alone. The augmented AMPK response was associated with improved viability and the induction of autophagy. These observations suggest that a threshold of AMPK activity has to be attained in order to trigger autophagy, since neither androgen deprivation nor hypoxia by itself was capable of pushing AMPK activity past that threshold. Beclin-1 was identified as a potential downstream target of AMPK in turning on the autophagic cascade. If autophagy was blocked by chemical inhibition or RNA interference of key regulators, e.g., AMPK or beclin-1, more cells would die by apoptosis. The occurrence of autophagy is thus a survival mechanism for androgen-dependent prostate cancer cells to escape from an androgen-deprived and hypoxic subsistence.
机译:本研究旨在研究(i)AMPK激活在遭受雄激素剥夺和缺氧的雄激素依赖性前列腺癌细胞中诱导自噬的作用,以及(ii)在这些恶劣条件下自噬是否具有生存优势。低雄激素和低氧是在手术或医学去势后前列腺癌组织中经常发现的两种并存疾病。在LNCaP细胞中,雄激素的剥夺和缺氧共同促进了AMPK的激活,使其水平比单独使用任何一种情况都更高。增强的AMPK反应与提高的生存能力和自噬的诱导有关。这些观察结果表明,必须达到AMPK活性阈值才能触发自噬,因为雄激素剥夺和缺氧本身均不能使AMPK活性超过该阈值。 Beclin-1被确定为开启自噬级联反应的AMPK的潜在下游目标。如果自噬被关键调节剂(例如AMPK或beclin-1)的化学抑制或RNA干扰所阻断,则更多的细胞会因凋亡而死亡。因此,自噬的发生是雄激素依赖性前列腺癌细胞摆脱雄激素缺乏和低氧生存的生存机制。

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