Machado-Nils Aline V, de Faria Larissa Om, Vieira André S, Teixeira Simone A, Muscará Marcelo N, Ferrari Elenice Am
Departamento de Biologia Estrutural e Funcional, Instituto de Biologia, Universidade Estadual de Campinas (UNICAMP), Rua Monteiro Lobato, 255, Campinas, São Paulo 13083-970, Brazil.
J Circadian Rhythms. 2013 Nov 1;11(1):12. doi: 10.1186/1740-3391-11-12.
Nitric oxide synthase (NOS) is essential for the synthesis of nitric oxide (NO), a non-conventional neurotransmitter with an important role in synaptic plasticity underlying processes of hippocampus-dependent memory and in the regulation of biological clocks and circadian rhythms. Many studies have shown that both the NOS cytosolic protein content and its enzymatic activity present a circadian variation in different regions of the rodent brain, including the hippocampus. The present study investigated the daily variation of NOS enzymatic activity and the cytosolic content of nNOS in the hippocampus of pigeons.
Adult pigeons kept under a skeleton photoperiod were assigned to six different groups. Homogenates of the hippocampus obtained at six different times-of-day were used for NOS analyses. Both iNOS activity and nNOS cytosolic protein concentrations were highest during the subjective light phase and lowest in the subjective dark phase of the circadian period. ANOVA showed significant time differences for iNOS enzymatic activity (p < 0.05) and for nNOS protein content (p < 0.05) in the hippocampus. A significant daily rhythm for both iNOS and nNOS was confirmed by analysis with the Cosinor method (p < 0.05). The present findings indicate that the enzymatic activity of iNOS and content of nNOS protein in the hippocampus of pigeons exhibit a daily rhythm, with acrophase values occurring during the behavioral activity phase.
The data corroborate the reports on circadian variation of NOS in the mammalian hippocampus and can be considered indicative of a dynamic interaction between hippocampus-dependent processes and circadian clock mechanisms.
一氧化氮合酶(NOS)对于一氧化氮(NO)的合成至关重要,NO是一种非传统神经递质,在海马体依赖记忆过程的突触可塑性以及生物钟和昼夜节律的调节中发挥着重要作用。许多研究表明,在包括海马体在内的啮齿动物大脑的不同区域,NOS胞质蛋白含量及其酶活性均呈现昼夜变化。本研究调查了家鸽海马体中NOS酶活性和nNOS胞质含量的每日变化。
将处于骨架光周期下的成年家鸽分为六个不同组。使用在一天中六个不同时间点获得的海马体匀浆进行NOS分析。在昼夜周期的主观光照期,诱导型一氧化氮合酶(iNOS)活性和nNOS胞质蛋白浓度均最高,而在主观黑暗期最低。方差分析显示,海马体中iNOS酶活性(p < 0.05)和nNOS蛋白含量(p < 0.05)存在显著的时间差异。用余弦法分析证实iNOS和nNOS均有显著的日节律(p < 0.05)。目前的研究结果表明,家鸽海马体中iNOS的酶活性和nNOS蛋白含量呈现日节律,高峰期出现在行为活动期。
这些数据证实了关于哺乳动物海马体中NOS昼夜变化的报道,可被视为海马体依赖过程与生物钟机制之间动态相互作用的指标。