首页> 美国卫生研究院文献>The Journal of Neuroscience >Phosphorylation of Huntingtin at Ser421 in YAC128 Neurons Is Associated with Protection of YAC128 Neurons from NMDA-Mediated Excitotoxicity and Is Modulated by PP1 and PP2A
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Phosphorylation of Huntingtin at Ser421 in YAC128 Neurons Is Associated with Protection of YAC128 Neurons from NMDA-Mediated Excitotoxicity and Is Modulated by PP1 and PP2A

机译:YAC128神经元中Ser421处的Huntingtin磷酸化与保护YAC128神经元免受NMDA介导的兴奋性毒性有关并受PP1和PP2A的调节。

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摘要

YAC transgenic mice expressing poly(Q)-expanded full-length huntingtin (mhtt) recapitulate many behavioral and neuropathological features of Huntington disease (HD). We have previously observed a reduction in phosphorylation of mhtt at S421 in the presence of the mutation for HD. In addition, phosphorylation of normal S421-htt is reduced after excitotoxic stimulation of NMDA receptors (NMDARs). To test whether NMDAR stimulation contributes to reduced pS421-htt levels in HD, we determined phosphorylation of htt at Ser421 after NMDA-induced excitotoxicity in neurons from YAC128 mice.Here, we report that the total level of pS421-htt is reduced in YAC128 primary neurons after excitotoxic NMDAR stimulation. Similarly, the total level of pS421-htt is reduced in YAC128 transgenic mice after quinolinic acid injection into the striatum. In contrast, loss of phosphorylation of pS421-htt is prevented in YAC mice that never develop clinical or neuropathological features of HD [the caspase 6-resistant YAC128 transgene (C6R)].To gain insight into the mechanisms underlying these findings, we determined that the Ser/Thr protein phosphatases PP1 and PP2A dephosphorylate pS421-htt in situ and after excitotoxic stimulation of NMDARs in neurons. Furthermore, increasing the phosphorylation of htt at S421 by blocking PP1 and PP2A activity protects YAC128 striatal neurons from NMDA-induced cell death. These results, together with the observed modulation of pS421-htt levels by dopamine, the reduced expression of PP1 inhibitor Darpp-32 in the striatum of YAC128 mice, and the reduced phosphorylation of PP1 substrate CreB, point to altered regulation of phosphatase activity in HD and highlight enhancing phosphorylation of htt at S421 as a therapeutic target.
机译:YAC转基因小鼠表达的聚(Q)扩展全长亨廷顿蛋白(mhtt)概括了亨廷顿病(HD)的许多行为和神经病理特征。我们先前已经观察到在存在HD突变的情况下S421处mhtt的磷酸化降低。另外,在兴奋性刺激NMDA受体(NMDAR)后,正常S421-htt的磷酸化降低。为了测试NMDAR刺激是否有助于降低HD的pS421-htt水平,我们测定了NMDA诱导的YAC128小鼠神经元兴奋性毒性后Ser 421 处htt的磷酸化。兴奋性NMDAR刺激后,YAC128原代神经元中pS421-htt降低。同样,在将喹啉酸注射到纹状体后,YAC128转基因小鼠的pS421-htt总水平降低。相比之下,在从未出现过HD的临床或神经病理学特征[caspase 6耐药性YAC128转基因(C6R)]的YAC小鼠中,可以防止pS421-htt磷酸化的丧失。为了了解这些发现的潜在机制,我们确定Ser / Thr蛋白磷酸化酶PP1和PP2A在原位以及神经元NMDAR的兴奋性刺激后使pS421-htt去磷酸化。此外,通过阻止PP1和PP2A活性增加S421处htt的磷酸化,可以保护YAC128纹状体神经元免受NMDA诱导的细胞死亡。这些结果,加上多巴胺对pS421-htt水平的调节,YAC128小鼠纹状体中PP1抑制剂Darpp-32的表达降低以及PP1底物CreB的磷酸化降低,都表明HD中磷酸酶活性的调节改变并强调增强S421处的htt磷酸化作为治疗靶点。

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