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首页> 外文期刊>Genes to cells : >Effects of 6-meals-a-day feeding and 6-meals-a-day feeding combined with adrenalectomy on daily gene expression rhythms in rat epididymal white adipose tissue
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Effects of 6-meals-a-day feeding and 6-meals-a-day feeding combined with adrenalectomy on daily gene expression rhythms in rat epididymal white adipose tissue

机译:每天进食六餐和每天进食六餐联合肾上腺切除术对大鼠附睾白色脂肪组织日常基因表达节律的影响

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The master clock in the hypothalamic suprachiasmatic nucleus (SCN) is assumed to synchronize the tissue-specific rhythms of the peripheral clocks with the environmental dayight changes via neural, humoral and/or behavioral connections. The feeding rhythm is considered an important Zeitgeber for peripheral clocks, as daytime feeding reverses (clock) gene rhythms in the periphery, but not in the SCN. In this study, we investigated the necessity of a daily feeding rhythm for maintaining gene expression rhythms in epididymal white adipose tissue (eWAT). We showed that 7 of 9 rhythmic metabolic/adipokine genes, but not clock genes, lost their rhythmicity upon exposure to 6-meals-a-day feeding. Previously, we showed comparable effects of adrenalectomy on eWAT; therefore, subsequently we investigated the effect of simultaneous disruption of these humoral and behavioral signaling pathways, by exposing adrenalectomized animals to 6-meals-a-day feeding. Interestingly, under these conditions, all the clock genes and 10 of 11 rhythmic metabolic/adipokine genes lost their rhythmicity. These data indicate that adrenal hormones and feeding rhythm are indispensable for maintaining daily rhythms in metabolic/adipokine gene, but not clock gene, expression in eWAT. In contrast, at least one of these two signals should be present in order for eWAT clock gene rhythms to be maintained.
机译:假定下丘脑上眼睑上核(SCN)中的主时钟通过神经,体液和/或行为联系使周围时钟的组织特定节律与环境昼/夜变化同步。进食节奏被认为是外围时钟的重要Zeitgeber,因为白天进食在外围而不是在SCN中逆转(时钟)基因节奏。在这项研究中,我们调查了在维持附睾白色脂肪组织(eWAT)中的基因表达节律的日常进食节律的必要性。我们发现9种节律性代谢/脂肪因子基因中的7种(而不是时钟基因)在每天喂6餐时失去了节律性。以前,我们显示了肾上腺切除术对eWAT的可比作用;因此,随后,我们通过将肾上腺切除的动物暴露于每天六餐的喂养中,研究了这些体液和行为信号通路同时中断的影响。有趣的是,在这些条件下,所有时钟基因和11种节律性代谢/脂肪因子基因中的10种失去了节律性。这些数据表明,肾上腺激素和摄食节律对于维持eWAT中代谢/脂肪因子基因而非时钟基因的日常节律必不可少。相反,为了维持eWAT时钟基因节律,应该存在这两个信号中的至少一个。

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