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Sugar transporter genes in grass carp (Ctenopharyngodon idellus): molecular cloning, characterization, and expression in response to different stocking densities

机译:草鲤鱼中的糖转运蛋白基因(Ctenopharyncodon Idellus):响应于不同库存密度的分子克隆,表征和表达

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Glucose and fructose play a central role in the metabolism and cellular homeostasis of organisms. Their absorption is co-mediated by two families of glucose transporters, Na+-coupled glucose co-transporters (SGLTs) and facilitative Na+-independent sugar carriers (GLUTs), in the intestine. However, limited information has been available on these transporters in fish. Therefore, we studied glut2, sglt1, and sglt4 genes in grass carp (Ctenopharyngodon idellus). The full-length cDNAs of glut2 was 2308 bp, with an open reading frame (ORF) of 503 amino acids (AAs). The full-length cDNAs of sglt1 was 2890 bp, with an ORF of 658 AAs. Additionally, the full-length cDNAs of sglt4 was 2090 bp, with an ORF encoding 659 AAs. The three deduced AA sequences showed high homology between grass carp and other cyprinid fish species. Based on homology modeling, three-dimensional models of GLUT2, SGLT1, and SGLT4 proteins were created and transmembrane domains were noted. glut2, sglt1, and sglt4 were abundantly expressed in the anterior and mid intestine. In particular, glut2 was markedly expressed in liver (P < 0.05). Additionally, the results indicated that different stocking densities (0.9 or 5.9 kg m(-2)) did not alter intestinal section-dependent expression patterns of the three transporter genes. However, high stocking density impacted segmental mRNA expression levels. This work demonstrated that mRNA expression of sugar transporter genes in the fish intestine was segment specific, and crowding stress may affect the activity of intestinal sugar transporters. These results provided new insights into the relationship between crowding stress and intestinal sugar transporters in fish.
机译:葡萄糖和果糖在生物体的新陈代谢和细胞稳态中起着核心作用。它们的吸收通过两种葡萄糖转运蛋白,Na + -coupled葡萄糖共转运蛋白(Sltitapative Na + -Independent糖载体(促进的Na + -Independent糖载体(凝乳)共同介导。但是,在鱼类中的这些运输司机上有限。因此,我们研究了Grut2,SGLT1和SGRT4基因在草鲤鱼(Ctenopharyngodon Idellus)。 Glut2的全长CDNA为2308bp,具有503个氨基酸(AAS)的开放阅读框架(ORF)。 SGLT1的全长CDNA为2890 BP,具有658 AAS的ORF。另外,SGLT4的全长CDNA为2090bp,具有编码659 AA的ORF。三种推导的AA序列显示出草鲤和其他脱果白鱼类之间的高同源性。基于同源性建模,创建了三维型号的GLUT2,SGLT1和SGLT4蛋白质,并注意到跨膜结构域。 Glut2,SGLT1和SGLT4在前肠和中肠中大量表达。特别是,Glut2在肝脏中显着表达(P <0.05)。另外,结果表明,不同的放养密度(0.9或5.9kg m(-2))没有改变三个转运蛋白基因的肠道部分依赖性表达模式。但是,高袜密度受影响的节段mRNA表达水平。这项工作表明,鱼肠中糖转运蛋白基因的mRNA表达是特异性的,并且拥挤应力可能影响肠道糖转运蛋白的活性。这些结果为鱼类中拥挤应力和肠糖转运蛋白的关系提供了新的见解。

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