首页> 美国卫生研究院文献>Comparative and Functional Genomics >Scavenger Receptor Class B Type I a CD36 Related Protein in Macrobrachium nipponense: Characterization RNA Interference and Expression Analysis with Different Dietary Lipid Sources
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Scavenger Receptor Class B Type I a CD36 Related Protein in Macrobrachium nipponense: Characterization RNA Interference and Expression Analysis with Different Dietary Lipid Sources

机译:清道夫受体B类I型日本沼虾中CD36相关蛋白:表征RNA干扰和不同饮食脂质来源的表达分析

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摘要

The scavenger receptor class B, type I (SR-BI), is a member of the CD36 superfamily comprising transmembrane proteins involved in mammalian and fish lipid homeostasis regulation. We hypothesize that this receptor plays an important role in Macrobrachium nipponense lipid metabolism. However, little attention has been paid to SR-BI in commercial crustaceans. In the present study, we report a cDNA encoding M. nipponense scavenger receptor class B, type I (designated as MnSR-BI), obtained from a hepatopancreas cDNA library. The complete MnSR-BI coding sequence was 1545 bp, encoding 514 amino acid peptides. The MnSR-BI primary structure consisted of a CD36 domain that contained two transmembrane regions at the N- and C-terminals of the protein. SR-BI mRNA expression was specifically detected in muscle, gill, ovum, intestine, hepatopancreas, stomach, and ovary tissues. Furthermore, its expression in the hepatopancreas was regulated by dietary lipid sources, with prawns fed soybean and linseed oils exhibiting higher expression levels. RNAi-based SR-BI silencing resulted in the suppression of its expression in the hepatopancreas and variation in the expression of lipid metabolism-related genes. This is the first report of SR-BI in freshwater prawns and provides the basis for further studies on SR-BI in crustaceans.
机译:清除剂受体B类,I型(SR-BI)是CD36超家族的成员,该家族包含跨膜蛋白,参与哺乳动物和鱼类脂质体内稳态调节。我们假设该受体在日本沼虾脂代谢中起重要作用。但是,在商业甲壳类动物中,对SR-BI的关注很少。在本研究中,我们报告了从肝胰腺cDNA文库中获得的一种编码日本乳单抗清道夫受体B类I(称为MnSR-BI)的cDNA。完整的MnSR-BI编码序列为1545bp,编码514个氨基酸。 MnSR-BI一级结构由CD36结构域组成,该CD36结构域在蛋白质的N和C末端包含两个跨膜区域。在肌肉,g,卵,肠,肝胰脏,胃和卵巢组织中特异性检测到SR-BI mRNA表达。此外,其在肝胰腺中的表达受饮食脂质来源的调节,以虾为食的大豆和亚麻籽油显示出较高的表达水平。基于RNAi的SR-BI沉默导致其在肝胰腺中的表达受到抑制,以及脂质代谢相关基因的表达发生变化。这是SR-BI在淡水虾中的首次报道,并为进一步研究甲壳类动物中的SR-BI提供了基础。

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