首页> 外文期刊>Frontiers in Marine Science >Cloning and Characterization of Cholesterol 25-Hydroxylase (ch25h) From a Marine Teleost, Chinese Tongue Sole (Cynoglossus semilaevis), and Its Gene Expressions in Response to Dietary Arachidonic Acid
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Cloning and Characterization of Cholesterol 25-Hydroxylase (ch25h) From a Marine Teleost, Chinese Tongue Sole (Cynoglossus semilaevis), and Its Gene Expressions in Response to Dietary Arachidonic Acid

机译:胆固醇25-羟化酶(CH25H)的克隆与表征来自海绵唯一(Cynoglossus semilaevis)及其基因表达响应膳食花生酸的基因表达

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Our previous studies have shown that ARA regulated the gonadal steroidogenesis and the synthesis of gonadotrophin-releasing hormone (GnRH) in the brain in a gender-dependent manner in Chinese tongue sole, a marine teleost with typical sex dimorphism. As a following up-study, the current study aimed to clone and characterize a gene responding to dietary ARA differently between males and females, cholesterol 25-hydroxylase (ch25h), which has important roles in cholesterol and lipid metabolism of mammals, but is rarely investigated in fish. The full-length cDNA of Chinese tongue sole ch25h was cloned and characterized, and its transcription in the gonads, brain and liver of both males and females in response to dietary ARA levels (0.34%, 2.53%, and 9.63% of TFA) was investigated. The Chinese tongue sole Ch25h, which putatively is Ch25h subtype B, shared moderate identity to its known orthologs of other teleost and lower identity to human Ch25h. It has high transcription levels in the gonads, followed by skin and muscle, but low levels in the intestine, spleen, and kidney. High ARA levels significantly increased the ch25h transcription in the gonads and brain of male fish, but did not affect the transcription in the females. However, the effect of dietary ARA on ch25h transcription in the liver showed an opposite gender-difference pattern to those in the gonads and brain. To our knowledge, this is the first study in marine teleost investigating the nutritional regulation of ch25h expression.
机译:我们以前的研究表明,ARA在中国舌唯一的舌下依赖于中文唯一的方式,促进了大脑中脑内释放激素(GNRH)的合成促进了促进的肾儿药蛋白释放激素(GNRH)。作为以下研究,目前的研究旨在克隆并表征患有膳食ARA的基因,不同于雄性和女性,胆固醇25-羟化酶(CH25H),这对胆固醇和哺乳动物的脂质代谢具有重要作用,但很少在鱼中调查。克隆和特征,中文舌唯一CH25H的全长cDNA,其在男性和女性的GONADS,脑和肝脏转录,响应膳食ARA水平(0.34%,2.53%和9.63%的TFA)是调查。中国舌唯一的CH25H,借助于CH25H亚型B,与其已知的其他紧邻其其他紧邻和低于人类CH25H的身份的中等标识。它在Gonads中具有高的转录水平,其次是皮肤和肌肉,但肠道,脾脏和肾脏水平低。高ARA水平显着增加了男性鱼类和大脑中的CH25H转录,但不影响女性的转录。然而,膳食ARA对肝脏中CH25H转录的影响表现出对GONADS和大脑中的那些对性别差异模式相反。据我们所知,这是海洋电讯治疗CH25H表达的营养调节的第一次研究。

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