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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Photoperiod differentially regulates clock genes' expression in the suprachiasmatic nucleus of Syrian hamster.
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Photoperiod differentially regulates clock genes' expression in the suprachiasmatic nucleus of Syrian hamster.

机译:光周期差异调节时钟基因在叙利亚仓鼠的视交叉上核中的表达。

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The suprachiasmatic nuclei (SCN) contain the master circadian pacemaker in mammals. Generation and maintenance of circadian oscillations involve clock genes which interact to form transcriptional/translational loops and constitute the molecular basis of the clock. There is some evidence that the SCN clock can integrate variations in day length, i.e. photoperiod. However, the effects of photoperiod on clock-gene expression remain largely unknown. We here report the expression pattern of Period (Per) 1, Per2, Per3, Cryptochrome (Cry) 1, Cry2, Bmal1 and Clock genes in the SCN of Syrian hamsters when kept under long (LP) and short (SP) photoperiods. Our data show that photoperiod differentially affects the expression of all clock genes studied. Among the components of the negative limb of the feedback loop, Per1, Per2, Per3, Cry2 but not Cry1 genes show a shortened duration of their peak expression under SP compared with LP. Moreover, mRNA expression of Per1, Per3 and Cry1 are phase advanced in SP comparedwith LP. Per3 shows an mRNA peak of higher amplitude under SP conditions whereas Per1 and Per2 peak amplitudes are unaffected by photoperiod changes. Bmal1 expression is phase advanced without a change of duration in SP compared with LP. Furthermore, the expression of Clock is rhythmic under SP whereas no rhythm is observed under LP. These results, which provide further evidence that the core clock mechanisms of the SCN integrate photoperiod, are discussed in the context of the existing molecular model.
机译:视交叉上核(SCN)包含哺乳动物的生物钟起搏器。昼夜节律振荡的产生和维持涉及时钟基因,它们相互作用形成转录/翻译环并构成时钟的分子基础。有证据表明SCN时钟可以整合日长的变化,即光周期。但是,光周期对时钟基因表达的影响仍然未知。当我们在长(LP)和短(SP)光周期下时,我们在这里报告叙利亚仓鼠的SCN中Perio1,Per2,Per3,Cryptochrome(Cry)1,Cry2,Bmal1和Clock基因的表达模式。我们的数据表明,光周期差异影响所有研究的时钟基因的表达。与LP相比,在反馈回路负肢的组成部分中,Per1,Per2,Per3,Cry2(而非Cry1)基因在SP下的峰值表达持续时间较短。此外,与LP相比,SP中Per1,Per3和Cry1的mRNA表达是相位提前的。 Per3在SP条件下显示出更高幅度的mRNA峰,而Per1和Per2峰幅度不受光周期变化的影响。与LP相比,Bmal1表达在SP中持续时间不变,且持续时间不变。此外,Clock的表达在SP下有节奏,而在LP下则没有节奏。这些结果提供了进一步的证据,表明SCN的核心时钟机制整合了光周期,在现有分子模型的背景下进行了讨论。

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