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Activation of ataxia telangiectasia muted under experimental models and human Parkinson’s disease

机译:实验模型和人类帕金森氏病使共济失调毛细血管扩张的激活减弱

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In the present study we demonstrated that neurotoxin MPP+-induced DNA damage is followed by ataxia telangiectasia muted (ATM) activation either in cerebellar granule cells (CGC) or in B65 cell line. In CGC, the selective ATM inhibitor KU-55933 showed neuroprotective effects against MPP+-induced neuronal cell loss and apoptosis, lending support to the key role of ATM in experimental models of Parkinson’s disease. Likewise, we showed that knockdown of ATM levels in neuroblastoma B65 cells using an ATM-specific siRNA attenuates the phosphorylation of retinoblastoma protein without affecting other cell-cycle proteins involved in the G0/G1 cell-cycle phase. Moreover, we demonstrated DNA damage, in human brain samples of PD patients. These findings support a model in which MPP+ leads to ATM activation with a subsequent DNA damage response and activation of pRb. Therefore, this study demonstrates a new link between DNA damage by MPP+ and cell-cycle re-entry through retinoblastoma protein phosphorylation.
机译:在本研究中,我们证明了神经毒素MPP + 诱导的DNA损伤后,小脑颗粒细胞(CGC)或B65细胞系中的共济失调性毛细血管扩张静音(ATM)激活。在CGC中,选择性ATM抑制剂KU-55933对MPP + 诱导的神经元细胞丢失和凋亡具有神经保护作用,这支持了ATM在帕金森氏病实验模型中的关键作用。同样,我们发现使用ATM特异性siRNA抑制神经母细胞瘤B65细胞中ATM的水平可减弱视网膜母细胞瘤蛋白的磷酸化,而不会影响参与G 0 / G 1的其他细胞周期蛋白细胞周期阶段。此外,我们在PD患者的人脑样本中证明了DNA损伤。这些发现支持了一个模型,其中MPP + 导致ATM激活,随后发生DNA损伤反应和pRb激活。因此,这项研究证明了MPP + 对DNA的损伤与通过成视网膜细胞瘤蛋白磷酸化引起的细胞周期再进入之间的新联系。

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