Departamento de Psicobiologia, Universidade Federal de São Paulo (UNIFESP), Rua Napole;atao de Barros, 925, 04024-002, São Paulo, SP, Brazil.
Biol Chem. 2011 Apr;392(6):547-53. doi: 10.1515/BC.2011.057. Epub 2011 Apr 17.
Proteases are essential either for the release of neuropeptides from active or inactive proteins or for their inactivation. Neuropeptides have a fundamental role in sleep-wake cycle regulation and their actions are also likely to be regulated by proteolytic processing. Using fluorescence resonance energy transfer substrates, specific protease inhibitors and real-time PCR we demonstrate changes in angiotensin I-converting enzyme (ACE) expression and proteolytic activity in the central nervous system in an animal model of paradoxical sleep deprivation during 96 h (PSD). Male rats were distributed into five groups (PSD, 24 h, 48 h and 96 h of sleep recovery after PSD and control). ACE activity and mRNA levels were measured in hypothalamus, hippocampus, brainstem, cerebral cortex and striatum tissue extracts. In the hypothalamus, the significant decrease in activity and mRNA levels, after PSD, was only totally reversed after 96 h of sleep recovery. In the brainstem and hippocampus, although significant, changes in mRNA do not parallel changes in ACE specific activity. Changes in ACE activity could affect angiotensin II generation, angiotensin 1-7, bradykinin and opioid peptides metabolism. ACE expression and activity modifications are likely related to some of the physiological changes (cardiovascular, stress, cognition, metabolism function, water and energy balance) observed during and after sleep deprivation.
蛋白酶对于神经肽的释放(无论是从活性蛋白还是无活性蛋白中释放)或其失活都至关重要。神经肽在睡眠-觉醒周期的调节中起着基础性作用,其作用也可能受到蛋白水解加工的调节。本研究使用荧光共振能量转移底物、特异性蛋白酶抑制剂和实时 PCR,在 96 小时(PSD)快动眼睡眠剥夺(PSD)动物模型中,证明了中枢神经系统中血管紧张素 I 转换酶(ACE)表达和蛋白水解活性的变化。雄性大鼠分为五组(PSD、PSD 后 24 小时、48 小时和 96 小时睡眠恢复以及对照组)。在下丘脑、海马体、脑干、大脑皮层和纹状体组织提取物中测量 ACE 活性和 mRNA 水平。在下丘脑,PSD 后 ACE 活性和 mRNA 水平显著降低,仅在 96 小时睡眠恢复后完全恢复。在脑干和海马体中,尽管 mRNA 发生了显著变化,但 ACE 特异性活性的变化并不与 mRNA 变化平行。ACE 活性的变化可能会影响血管紧张素 II 的生成、血管紧张素 1-7、缓激肽和阿片肽代谢。ACE 表达和活性的改变可能与睡眠剥夺期间和之后观察到的一些生理变化(心血管、应激、认知、代谢功能、水和能量平衡)有关。