首页> 美国卫生研究院文献>International Journal of Molecular Sciences >New Insights on Vitamin K Metabolism in Senegalese sole (Solea senegalensis) Based on Ontogenetic and Tissue-Specific Vitamin K Epoxide Reductase Molecular Data
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New Insights on Vitamin K Metabolism in Senegalese sole (Solea senegalensis) Based on Ontogenetic and Tissue-Specific Vitamin K Epoxide Reductase Molecular Data

机译:基于个体发育和组织特有的维生素K环氧还原酶分子数据的塞内加尔鞋底(Solea senegalensis)中维生素K代谢的新见解

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摘要

Vitamin K (VK) is a key nutrient for several biological processes (e.g., blood clotting and bone metabolism). To fulfill VK nutritional requirements, VK action as an activator of pregnane X receptor (Pxr) signaling pathway, and as a co-factor of γ-glutamyl carboxylase enzyme, should be considered. In this regard, VK recycling through vitamin K epoxide reductases (Vkors) is essential and should be better understood. Here, the expression patterns of ( ) and ( ) were determined during the larval ontogeny of Senegalese sole ( ), and in early juveniles cultured under different physiological conditions. Full-length transcripts for and were determined and peptide sequences were found to be evolutionarily conserved. During larval development, expression of showed a slight increase during absence or low feed intake. Expression of continuously decreased until 24 h post-fertilization, and remained constant afterwards. Both were ubiquitously expressed in adult tissues, and highest expression was found in liver for , and ovary and brain for . Expression of and was differentially regulated under physiological conditions related to fasting and re-feeding, but also under VK dietary supplementation and induced deficiency. The present work provides new and basic molecular clues evidencing how VK metabolism in marine fish is sensitive to nutritional and environmental conditions.
机译:维生素K(VK)是几种生物学过程(例如血液凝固和骨骼代谢)的关键营养素。为了满足VK的营养需求,应考虑VK作为孕烷X受体(Pxr)信号传导途径的激活剂和γ-谷氨酰羧化酶的辅助因子。在这方面,通过维生素K环氧还原酶(Vkors)回收VK是必不可少的,应该更好地理解。在这里,()和()的表达模式是在塞内加尔鞋底()的幼虫发育过程中以及在不同生理条件下培养的早期幼虫中确定的。确定了和的全长转录本,发现肽序列在进化上是保守的。在幼体发育过程中,在缺乏或采食量低时,其表达略有增加。表达持续降低直至受精后24小时,此后保持恒定。两者均在成人组织中普遍表达,在肝脏中以最高表达,在卵巢和脑中以最高表达。在与禁食和重新喂养有关的生理条件下,以及在VK饮食补充和诱导的缺乏下,的表达和受差异调节。目前的工作提供了新的基础分子线索,证明了海水鱼类中VK代谢如何对营养和环境条件敏感。

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