首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Molecular cloning, tissue distribution and daily expression of cry1 and cry2 clock genes in European seabass (Dicentrarchus labrax)
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Molecular cloning, tissue distribution and daily expression of cry1 and cry2 clock genes in European seabass (Dicentrarchus labrax)

机译:欧洲鲈鱼(Dicentrarchus labrax)的cry1和cry2时钟基因的分子克隆,组织分布和日常表达

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Biological rhythms are driven by circadian oscillators, which are ultimately controlled by the cyclic expression of clock genes. Cryptochromes (CRY), blue light photoreceptors, belong to the negative elements of the transcriptional feedback loop into the molecular clock. This paper describes the cloning and characterization of two cryptochromes (cry1 and 2) in European seabass, which is considered an interesting chronobiology model due to its dual (diurnalocturnal) behavior. The cloned cDNA fragments encoded for two proteins of 567 and 668 amino acids, which included the FAD-binding and the DNA-photolyase domains. Moreover, both proteins had a high homology with cryptochrome proteins (Cry) of other teleost fish. These c. ry1 and 2 genes were expressed in several tissues of seabass (brain, liver, heart, retina, muscle, spleen, gill and intestine). In addition, the daily expression of cry1 was rhythmic in brain, heart and liver with the acrophase around ZT 03:15 h (after the onset of lights). Similarly, the c. ry2 daily expression was rhythmic in liver, peaking at ZT 03:28 h, whereas in brain the acrophase was at ZT 11:08 h (shortly prior to the offset of lights). These findings provide new elements to help understanding the functioning of the molecular clock of seabass.
机译:生物节律由生物钟振荡器驱动,而生物钟最终由时钟基因的循环表达控制。隐色染料(CRY)是蓝光感光体,属于分子时钟中的转录反馈环的负性元素。本文介绍了欧洲鲈鱼中两种隐色染料(cry1和2)的克隆和鉴定,由于其双重(昼夜)行为,因此被认为是一种有趣的年代生物学模型。克隆的cDNA片段编码两个567和668个氨基酸的蛋白质,包括FAD结合和DNA光解酶结构域。此外,这两种蛋白与其他硬骨鱼的隐色蛋白(Cry)具有高度同源性。这些c。 ry1和2基因在鲈鱼的几种组织(大脑,肝脏,心脏,视网膜,肌肉,脾脏,g和肠)中表达。此外,cry1的日常表达在大脑,心脏和肝脏中具有节律性,其顶生相在ZT 03:15 h左右(开灯后)。同样,c。 ry2的日常表达在肝脏中是有节奏的,在ZT 03:28 h达到峰值,而在大脑中,顶相在ZT 11:08 h(在光照消失之前不久)达到峰值。这些发现提供了新的要素,以帮助理解鲈鱼分子钟的功能。

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