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首页> 外文期刊>Frontiers in Physiology >Temporal Expression Patterns of Clock Genes and Aquaporin 5/Anoctamin 1 in Rat Submandibular Gland Cells
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Temporal Expression Patterns of Clock Genes and Aquaporin 5/Anoctamin 1 in Rat Submandibular Gland Cells

机译:钟基因的时间表达模式和大鼠颌下腺细胞中的时钟基因和Anoctamin 1

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摘要

Circadian rhythms are essential for health and regulate various physiological functions. These rhythms are regulated by a negative-feedback loop involving clock genes in the suprachiasmatic nucleus (SCN) and peripheral tissues. The rate of secretion of salivary substances, ions, and water follows a circadian rhythm, however, the relationship between the molecular mechanism of salivary secretion and peripheral circadian rhythm is not yet clear. Anoctamin 1 (ANO1, also known as TMEM16A) and Aquaporin 5 (AQP5) play an important role in the transport of ions and water in the submandibular glands (SGs). We examined the interaction between the rhythmic expression pattern of the clock genes, Ano1 and Aqp5 , in rat whole SGs as well as isolated acinar and ductal cells. Circadian rhythmic expression for Bmal1, Per1, Per2, Clock, Cry1, Cry2, Ror α, and Rev-erb α mRNAs, also called the clock genes, was observed in rat SGs by semi-quantitative RT-PCR analysis. We also observed rhythmic patterns in Ano1 and Aqp5 mRNA expression. The expression of ANO1 protein also showed circadian rhythm, as confirmed by western blot analysis. We could not observe any time delay between the peak expression of ANO1 protein and its mRNA. Expression levels of the clock gene mRNAs in the ductal cells was higher than that in acinar cells, however, rhythmic oscillations were observed in both. Our results suggest that SGs have peripheral clocks, and rhythmic expressions of Ano1 and Aqp5 along with the clock genes, may play an important role in the circadian regulation of salivary secretion.
机译:昼夜节律对健康至关重要,并规范各种生理功能。这些节奏由涉及在高温核(SCN)和外周组织中的时钟基因的负反馈回路调节。然而,唾液物质和水分的分泌率遵循昼夜节律,唾液分泌和周边昼夜周边节律之间的关系尚不清楚。 Anoctamin 1(Ano1,也称为TMEM16A)和Aquaporin 5(AQP5)在潜水腺(SGS)中的离子和水中起着重要作用。我们检查了钟基因,ANO1和AQP5的节奏表达模式与大鼠整个SGS以及分离的醋醛和导管细胞之间的相互作用。通过半定量RT-PCR分析,在大鼠SGS中观察到BMA11,PER1,PER2,时钟,CRY1,CRY2,RORα和REV-ERBαmRNA的昼夜节律表达。我们还观察到ANO1和AQP5 mRNA表达中的节奏模式。 ANO1蛋白的表达还显示昼夜节律,如蛋白质印迹分析所证实。我们无法观察到ANO1蛋白及其mRNA的峰值表达之间的任何时间延迟。管道细胞中时钟基因mRNA的表达水平高于腺体细胞中的表达水平,然而,两者都观察到节奏振荡。我们的研究结果表明,SGS具有外围钟表,ANO1和AQP5的节奏表达以及时钟基因,可能在唾液分泌的昼夜节约调节中发挥重要作用。

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