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Light conditions affect rhythmic expression of aquaporin 5 and anoctamin 1 in rat submandibular glands

机译:光照条件影响大鼠下颌下腺水通道蛋白5和八胺1的节律表达

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摘要

Circadian rhythms regulate various physiological functions and are, therefore, essential for health. Light helps regulate the master and peripheral clocks. The secretion rates of saliva and electrolytes follow a circadian rhythm as well. However, the relationship between the molecular mechanism of saliva water secretion and the peripheral circadian rhythm in salivary glands is not yet clear. The transmembrane proteins aquaporin5 ( ) and anoctamin1 ( ) are essential for water transport in the submandibular glands (SGs). The purpose of this study was to reveal the effect of light conditioning on the peripheral clock in SGs. We examined temporal expression patterns among clock genes, and , in rat SGs under light/dark (LD) and dark/dark (DD) conditions. We observed circadian rhythmic expression of , , , , and mRNAs under both LD and DD conditions. The expression levels of and peaked 6 h earlier under the DD condition than under the LD condition. Maintenance of the circadian rhythm of and expression even under the DD condition indicates that and may be controlled by clock genes; such genes are called clock-controlled genes (CCGs). Western blot analysis revealed the circadian oscillation and peak shift of AQP5 and ANO1expression under DD conditions. Clock genes may regulate the rhythmic expression of and and may control osmic gradients in SGs.
机译:昼夜节律调节各种生理功能,因此对健康至关重要。灯光有助于调节主时钟和外设时钟。唾液和电解质的分泌率也遵循昼夜节律。然而,唾液中唾液水分泌的分子机制与周围昼夜节律之间的关系尚不清楚。跨膜蛋白aquaporin5()和anoctamin1()对于下颌下腺(SGs)中的水运输至关重要。这项研究的目的是揭示光调节对SGs外围时钟的影响。我们检查了在浅色/深色(LD)和深色/深色(DD)条件下大鼠SGs中时钟基因之间的时间表达模式。我们观察到在LD和DD条件下,,,和mRNA的昼夜节律性表达。在DD条件下的表达水平和峰值在LD条件下提前了6小时。即使在DD条件下,昼夜节律和表达的维持也表明它可能受时钟基因控制;这些基因称为时钟控制基因(CCG)。蛋白质印迹分析揭示了DD条件下AQP5和ANO1表达的昼夜节律振荡和峰移。时钟基因可调节SG的节律性表达,并可控制SG中的渗透梯度。

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