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首页> 外文期刊>Neuropharmacology >Inhibition of aberrant cyclin-dependent kinase 5 activity attenuates isoflurane neurotoxicity in the developing brain
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Inhibition of aberrant cyclin-dependent kinase 5 activity attenuates isoflurane neurotoxicity in the developing brain

机译:抑制异常的细胞周期蛋白依赖性激酶5活性减弱了正在发育的大脑中的异氟烷神经毒性

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Aberrant CDK5 activity is implicated in a number of neurodegenerative disorders. Isoflurane exposure leads to neuronal apoptosis, and subsequent learning and memory defects in the developing brain. The present study was designed to examine whether and how CDK5 activity plays a role in developmental isoflurane neurotoxicity. Rat pups and hippocampal neuronal cultures were exposed to 1.5% isoflurane for 4 h. The protein and mRNA levels of CDK5, p35 and p25 were detected by western blot and QReal-Time PCR. CDK5 activity was evaluated in vitro using Histone H1 as a substrate. Roscovitine (an inhibitor of CDK5) was applied before isoflurane treatment, cleaved Caspase-3, Bcl-2, Bax, MEF2 and phospho-MEF2A-Ser-408 expressions were determined. Dominant-Negative CDK5 was transfected before isoflurane treatment. Neuronal apoptosis was evaluated by Flow cytometry (FCM) and TUNEL-staining. Cognitive functions were assessed by Morris water maze. We found that isoflurane treatment led to an aberrant CDK5 activation due to its activator p25 that was cleaved from p35 by calpain. Inhibition of CDK5 activity with Roscovitine enhanced Bcl-2, and decreased cleaved Caspase-3 and Bax expressions. In addition, isoflurane exposure resulted in a decrease of MEF2 and increase of phospho-MEF2A-Ser-408, which were rescued by Roscovitine or Dominant-Negative CDK5 transfection. Dominant-Negative CDK5 transfection also decreased the percentage of TUNEL-positive cells in isoflurane neurotoxicity. Moreover, Roscovitine remarkably alleviated the learning and memory deficits induced by postnatal isoflurane exposure. These results indicated that aberrant CDK5 activity-dependent MEF2 phosphorylation mediates developmental isoflurane neurotoxicity. Inhibition of CDK5 overactivation contributes to the relief of isoflurane neurotoxicity in the developing brain.
机译:异常的CDK5活性与许多神经退行性疾病有关。异氟烷暴露会导致神经元凋亡,并在发育中的大脑中导致随后的学习和记忆缺陷。本研究旨在检查CDK5活性是否以及如何在发育异氟烷神经毒性中起作用。大鼠幼崽和海马神经元培养物暴露于1.5%异氟烷4 h。通过蛋白质印迹和QReal-Time PCR检测CDK5,p35和p25的蛋白质​​和mRNA水平。使用组蛋白H1作为底物在体外评估CDK5活性。在异氟烷处理之前,先使用Roscovitine(CDK5抑制剂),测定裂解的Caspase-3,Bcl-2,Bax,MEF2和磷酸化MEF2A-Ser-408的表达。在异氟烷处理之前,转染显性阴性CDK5。通过流式细胞仪(FCM)和TUNEL染色评估神经元凋亡。莫里斯水迷宫评估了认知功能。我们发现异氟烷处理导致异常的CDK5激活,这是由于其激活剂p25被钙蛋白酶从p35裂解而来。 Roscovitine抑制CDK5活性可增强Bcl-2,并降低裂解的Caspase-3和Bax表达。此外,异氟烷的暴露导致MEF2的减少和磷酸-MEF2A-Ser-408的增加,这可以通过Roscovitine或显性负CDK5转染来挽救。显性负CDK5转染还降低了异氟烷神经毒性中TUNEL阳性细胞的百分比。此外,罗斯科维汀显着减轻了出生后异氟烷暴露引起的学习和记忆障碍。这些结果表明异常的CDK5活性依赖MEF2磷酸化介导异氟烷的神经毒性。抑制CDK5过度激活有助于缓解发育中的大脑中的异氟烷神经毒性。

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