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Time of Day and Nutrients in Feeding Govern Daily Expression Rhythms of the Gene for Sterol Regulatory Element-binding Protein (SREBP)-1 in the Mouse Liver*

机译:一天中的时间和营养物质控制着小鼠肝脏中甾醇调节因子结合蛋白(SREBP)-1基因的日常表达节律*

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摘要

Sterol regulatory element-binding protein-1 (SREBP-1) plays a central role in transcriptional regulation of genes for hepatic lipid synthesis that utilizes diet-derived nutrients such as carbohydrates and amino acids, and expression of SREBP-1 exhibits daily rhythms with a peak in the nocturnal feeding period under standard housing conditions of mice. Here, we report that the Srebp-1 expression rhythm shows time cue-independent and Clock mutation-sensitive circadian nature, and is synchronized with varied photoperiods apparently through entrainment of locomotor activity and food intake. Fasting caused diminution of Srebp-1 expression, while diabetic db/db and ob/ob mice showed constantly high expression with loss of rhythmicity. Time-restricted feedings during mid-light and mid-dark periods exhibited differential effects, the latter causing more severe damping of the oscillation. Therefore, “when to eat in a day (the light/dark cycle),” rather than “whenever to eat in a day,” is a critical determinant to shape the daily rhythm of Srebp-1 expression. We further found that a high-carbohydrate diet and a high-protein diet, as well as a high-fat diet, cause phase shifts of the oscillation peak into the light period, underlining the importance of “what to eat.” Daily rhythms of SREBP-1 protein levels and Akt phosphorylation levels also exhibited nutrient-responsive changes. Taken together, these findings provide a model for mechanisms by which time of day and nutrients in feeding shape daily rhythms of the Srebp-1 expression and possibly a number of other physiological functions with interindividual and interdaily differences in human beings and wild animals subjected to day-by-day changes in dietary timing and nutrients.
机译:甾醇调节元件结合蛋白1(SREBP-1)在肝脂质合成基因的转录调节中起着中心作用,该基因利用饮食中的营养物质,例如碳水化合物和氨基酸,并且SREBP-1的表达表现出日常节律性,在小鼠标准住房条件下,夜间进食期达到峰值。在这里,我们报告Srebp-1表达节律显示时间无关提示和Clock突变敏感的昼夜节律性质,并明显地通过自发活动和食物摄入,与各种光周期同步。禁食导致Srebp-1表达减少,而糖尿病db / db和ob / ob小鼠表现出持续高表达而失去节律。在中亮和中暗期间有时间限制的喂食表现出不同的效果,后者导致更严重的振荡阻尼。因此,“每天何时进食(光照/黑暗周期)”而不是“每天何时进食”是决定Srebp-1表达的每日节律的关键因素。我们进一步发现,高碳水化合物饮食和高蛋白饮食以及高脂肪饮食会导致振荡峰进入光亮期的相移,从而强调“吃什么”的重要性。 SREBP-1蛋白水平和Akt磷酸化水平的日常节律也表现出养分响应变化。综上所述,这些发现提供了一种机制模型,通过该模型,一天中的时间和食物中的营养成分决定了Srebp-1表达的每日节律,还可能影响人类和野生动物日间个体和个体间差异的许多其他生理功能。饮食时间和营养的每日变化。

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