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首页> 外文期刊>The Journal of Experimental Biology >Sequence and expression of a constitutive, facilitated glucose transporter (GLUT1) in Atlantic cod Gadus morhua
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Sequence and expression of a constitutive, facilitated glucose transporter (GLUT1) in Atlantic cod Gadus morhua

机译:组成组成,促进葡萄糖转运蛋白(GLUT1)在大西洋鳕鱼Gadus morhua中的序列和表达

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A putative glucose transporter, GLUT1, is reported for Atlantic cod Gadus morhua. A combination of RT-PCR, RLM-RACE and genome walking were used to articulate a 4560 bp cDNA (GenBank accession number AY526497). It contains a 149 bp 5' UTR, a 1470 bp open reading frame and a 2941 bp 3' UTR. At the nucleotide level, the cod GLUT1 ORF shares 78.2% sequence identity to human GLUT1 and the deduced amino acid sequence clusters with GLUT1s from rainbow trout and carp. GLUT1 transcript is highly expressed in brain, gill, heart and kidney and expressed to a lower level in at least six other tissues. Expression is evident immediately upon fertilization of eggs. Six hours of hypoxia at 40% DO2 did not alter expression levels in brain, gill, heart or kidney. The level of expression is not substantially altered in heart during low temperature challenge, although there is a suggestion that colder temperature could lead to lower levels of expression, consistent with the concept that the cold-acclimated heart has a reduced dependence upon glucose as a metabolic fuel. Two months of starvation did not significantly alter the level of expression of GLUT1 in heart. This is in marked contrast to the rat heart where fasting leads to a substantial decrease in GLUT1 levels. Overall, there is a ubiquitous tissue distribution of GLUT1, consistent with other species, and the level of gene expression, especially in heart, is relatively constant over a range of physiological conditions.
机译:据报道,大西洋鳕鱼Gadus morhua有一个假定的葡萄糖转运蛋白GLUT1。 RT-PCR,RLM-RACE和基因组步移的组合用于表达4560 bp cDNA(GenBank登录号AY526497)。它包含一个149 bp的5'UTR,一个1470 bp的开放阅读框和一个2941 bp的3'UTR。在核苷酸水平上,鳕鱼GLUT1 ORF与人GLUT1具有78.2%的序列同一性,并且推论出的虹鳟鱼和鲤鱼的GLUT1具有氨基酸序列簇。 GLUT1转录本在脑,腮,心脏和肾脏中高度表达,在至少其他六个组织中表达较低。卵受精后立即表达。在40%DO2下缺氧6小时不会改变脑,腮,心脏或肾脏的表达水平。尽管有人暗示低温会导致较低的表达水平,但有人认为低温刺激下心脏的表达水平不会发生实质性改变,这与冷适应的心脏对葡萄糖代谢的依赖性降低的概念一致。汽油。饥饿两个月没有显着改变心脏中GLUT1的表达水平。这与大鼠心脏形成鲜明对比,在大鼠心脏中,禁食可导致GLUT1水平大大降低。总体而言,GLUT1存在无处不在的组织分布,与其他物种一致,并且基因表达水平(尤其是在心脏中)在一系列生理条件下相对恒定。

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