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Transcriptional Characterization of Porcine Leptin and Leptin Receptor Genes

机译:猪瘦素和瘦素受体基因的转录特征

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摘要

The leptin (LEP) and its receptor (LEPR) regulate food intake and energy balance through hypothalamic signaling. However, the LEP-LEPR axis seems to be more complex and its expression regulation has not been well described. In pigs, LEP and LEPR genes have been widely studied due to their relevance. Previous studies reported significant effects of SNPs located in both genes on growth and fatness traits. The aim of this study was to determine the expression profiles of LEP and LEPR across hypothalamic, adipose, hepatic and muscle tissues in Iberian x Landrace backcrossed pigs and to analyze the effects of gene variants on transcript abundance. To our knowledge, non porcine LEPR isoforms have been described rather than LEPRb. A short porcine LEPR isoform (LEPRa), that encodes a protein lacking the intracellular residues responsible of signal transduction, has been identified for the first time. The LEPRb isoform was only quantifiable in hypothalamus while LEPRa appeared widely expressed across tissues, but at higher levels in liver, suggesting that both isoforms would develop different roles. The unique LEP transcript showed expression in backfat and muscle. The effects of gene variants on transcript expression revealed interesting results. The LEPRc.1987C>T polymorphism showed opposite effects on LEPRb and LEPRa hypothalamic expression. In addition, one out of the 16 polymorphisms identified in the LEPR promoter region revealed high differential expression in hepatic LEPRa. These results suggest a LEPR isoform-specific regulation at tissue level. Conversely, non-differential expression of LEP conditional on the analyzed polymorphisms could be detected, indicating that its regulation is likely affected by other mechanisms rather than gene sequence variants. The present study has allowed a transcriptional characterization of LEP and LEPR isoforms on a range of tissues. Their expression patterns seem to indicate that both molecules develop peripheral roles apart from their known hypothalamic signal transduction function.
机译:瘦素(LEP)及其受体(LEPR)通过下丘脑信号传导调节食物摄入和能量平衡。但是,LEP-LEPR轴似乎更为复杂,其表达调控尚未得到很好的描述。在猪中,LEP和LEPR基因因其相关性而被广泛研究。先前的研究报道了位于两个基因中的SNP对生长和脂肪性状的重大影响。这项研究的目的是确定伊比利亚x长白回交猪下丘脑,脂肪,肝和肌肉组织中LEP和LEPR的表达谱,并分析基因变异对转录本丰度的影响。据我们所知,已经描述了非猪LEPR亚型,而不是LEPRb。首次鉴定出短猪LEPR同工型(LEPRa),其编码的蛋白质缺乏负责信号转导的细胞内残基。 LEPRb亚型仅在下丘脑中可定量,而LEPRa似乎在组织中广泛表达,但在肝脏中含量较高,表明这两种亚型将发挥不同的作用。独特的LEP转录本在背脂和肌肉中表达。基因变异对转录表达的影响揭示了有趣的结果。 LEPRc.1987C> T多态性对LEPRb和LEPRa下丘脑表达表现出相反的作用。此外,在LEPR启动子区域鉴定出的16个多态性中,有1个在肝脏LEPRa中显示出高差异表达。这些结果表明在组织水平上的LEPR同工型特异性调节。相反,可以检测到以分析的多态性为条件的LEP的非差异表达,这表明其调控可能受其他机制而非基因序列变异的影响。本研究已经允许在一系列组织上对LEP和LEPR亚型进行转录表征。它们的表达模式似乎表明,除了已知的下丘脑信号转导功能外,这两种分子都发挥着外围作用。

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