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Human prion protein-mediated calcineurin activation induces neuron cell death via AMPK and autophagy pathway

机译:人朊蛋白介导的钙肌苷活化通过AMPK和自噬途径诱导神经元细胞死亡

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It is usually accepted that prion proteins induce apoptosis in nerve cells. However, the mechanisms of PrPsc-neurotoxicity are not completely clear. Calcineurin is a Ca2+/Vcalmodulin-dependent phosphatase. It activates autophagy, and may represent a link between deregulation of Ca2+ homeostasis and neuronal cell death. In this study, the effect of calcineurin activation mediated by human prion protein induced neuronal cell death via AMPK dephosphorylation and autophagy, was investigated. Synthetic peptides of PrP (PrP 106-126) increased calcineurin activity, without changing the levels of this protein phosphatase. Furthermore, these peptides reduced the levels of AMPK phosphorylation at threonine residue 172 and in autophagy activation. Calcineurin inhibitor, FK506, prevented this effect. The data showed that PrP-treated neurons had lower levels of AMPK than control neurons. This decrease in AMPK levels was matched via activation of autophagy. FK506 prevented the changes in AMPK and autophagy levels induced by PrP peptides. Taken together, the data demonstrated that prion peptides triggered an apoptotic cascade via calcineurin activation, which mediated AMPK dephosphorylation and autophagy activation. Therefore, these data suggest that therapeutic strategies targeting calcineurin inhibition might facilitate the management of neurodegenerative disorders including prion disease.
机译:通常接受朊病毒蛋白诱导神经细胞中的细胞凋亡。然而,PRPSC-神经毒性的机制并不完全清楚。钙素是Ca2 + / vcalmodulin依赖性磷酸酶。它激活自噬,并且可以代表DEERICATION CA2 +稳态和神经细胞死亡的联系。在这项研究中,研究了通过AMPK去磷酸化和自噬介导的人朊蛋白诱导的神经元细胞死亡析钙素激活的影响。 PRP(PRP 106-126)的合成肽增加钙素活性,而不改变该蛋白质磷酸酶的水平。此外,这些肽在苏氨酸残基172和自噬激活下降低了AMPK磷酸化的水平。 Calcineurin抑制剂FK506,防止了这种效果。数据显示,PRP处理的神经元的AMPK水平低于对照神经元。通过自噬激活匹配AMPK水平的这种降低。 FK506阻止了PrP肽诱导的AMPK和自噬水平的变化。在一起,数据显示,朊病毒肽通过钙蛋白激活触发凋亡级联,介导的AMPK去磷酸化和自噬激活。因此,这些数据表明,靶向钙素素抑制的治疗策略可能有助于管理包括朊病毒疾病的神经变性障碍。

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