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Nile Tilapia Neu3 sialidases: Molecular cloning, functional characterization and expression in Oreochromis niloticus

机译:尼罗罗非鱼Neu3唾液酸酶:尼罗罗非鱼的分子克隆,功能表征和表达

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Mammalian Neu3 is a ganglioside specific sialidase. Gangliosides are involved in various physiological events such as cell growth, differentiation and diseases. Significance of Neu3 and gangliosides is still unclear in aquaculture fish species. To gain more insights of fish Neu3 sialidases, molecular cloning and characterization were carried out in tilapia (. Oreochromis niloticus). A tilapia genome-wide search for orthologues of human NEU1, NEU2, NEU3 and NEU4 yielded eight putative tilapia sialidases, five of which were neu3-like and designated as neu3a, neu3b, neu3c, neu3d and neu3e. Among five neu3 genes, neu3a, neu3d and neu3e were amplified by PCR from adult fish brain cDNA with consensus sequences of 1227. bp, 1194. bp and 1155. bp, respectively. Multiple alignments showed conserved three Asp-boxes (SXDXGXTW), YRIP and VGPG motifs. The molecular weights for Neu3a, Neu3d and Neu3e were confirmed using immunoblotting analysis as 45.9. kDa, 44.4. kDa and 43.6. kDa, respectively. Lysate from neu3 genes transfected HEK293 cells showed sialidase activity in Neu3a towards ganglioside mix optimally at pH. 4.6. Using pure gangliosides as substrates, highest sialidase activity for Neu3a was observed towards GD3 followed by GD1a and GM3, but not GM1. On the other hand, sialidase activities were not observed in Neu3d and Neu3e towards various sialoglycoconjugates. Indirect immunofluorescence showed that tilapia Neu3a and Neu3d are localized at the plasma membrane, while most Neu3e showed a cytosolic localization. RT-PCR analyses for neu3a showed significant expression in the brain, liver, and spleen tissues, while neu3d and neu3e showed different expression patterns. Based on these results, tilapia Neu3 exploration is an important step towards full understanding of a more comprehensive picture of Neu3 sub-family of proteins in fish.
机译:哺乳动物Neu3是神经节苷脂特异性唾液酸酶。神经节苷脂参与各种生理事件,例如细胞生长,分化和疾病。 Neu3和神经节苷脂在水产养殖鱼类中的意义仍不清楚。为了获得更多有关鱼类Neu3唾液酸酶的见解,在罗非鱼(。Oreochromis niloticus)中进行了分子克隆和鉴定。在罗非鱼全基因组搜索人类NEU1,NEU2,NEU3和NEU4的直向同源物时,产生了8个推定的罗非鱼唾液酸酶,其中5个呈neu3样,分别命名为neu3a,neu3b,neu3c,neu3d和neu3e。通过PCR从五个成年鱼脑cDNA中扩增了neu3a,neu3d和neu3e基因,共有序列分别为1227. bp,1194。bp和1155. bp。多重比对显示保守的三个Asp-box(SXDXGXTW),YRIP和VGPG图案。使用免疫印迹分析确认Neu3a,Neu3d和Neu3e的分子量为45.9。 kDa,44.4。 kDa和43.6。分别为kDa。来自neu3基因转染的HEK293细胞的裂解物在Neu3a中对神经节苷脂混合物的唾液酸酶活性最适,在pH下最佳。 4.6。使用纯的神经节苷脂作为底物,Neu3a对GD3的唾液酸酶活性最高,其次是GD1a和GM3,但不是GM1。另一方面,在Neu3d和Neu3e中未观察到针对多种唾液酸糖共轭物的唾液酸酶活性。间接免疫荧光显示罗非鱼Neu3a和Neu3d定位在质膜上,而大多数Neu3e则显示胞质定位。 neu3a的RT-PCR分析显示在脑,肝脏和脾脏组织中有明显的表达,而neu3d和neu3e则显示出不同的表达模式。基于这些结果,罗非鱼Neu3探索是全面了解鱼类蛋白Neu3子家族更全面图片的重要一步。

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