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首页> 外文期刊>American Journal of Physiology >The apical (hPepT1) and basolateral peptide transport systems of Caco-2 cells are regulated by AMP-activated protein kinase.
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The apical (hPepT1) and basolateral peptide transport systems of Caco-2 cells are regulated by AMP-activated protein kinase.

机译:CaCO-2细胞的顶端(HPEPT1)和基石外侧肽传输系统由AMP-活化的蛋白激酶调节。

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摘要

The effect of 5-aminoimidazole-4-carboxamide-ribonucleoside (AICAR) activation of the AMP-activated protein kinase (AMPK) on the transport of the model radiolabeled dipeptide [(3)H]-D-Phe-L-Gln was investigated in the human epithelial colon cancer cell line Caco-2. Uptake and transepithelial fluxes of [(3)H]-D-Phe-L-Gln were carried out in differentiated Caco-2 cell monolayers, and hPepT1 and glucose transporter 2 (GLUT2) protein levels were quantified by immunogold electron microscopy. AICAR treatment of Caco-2 cells significantly inhibited apical [(3)H]-D-Phe-L-Gln uptake, matched by a decrease in brush-border membrane hPepT1 protein but with a concomitant increase in the facilitated glucose transporter GLUT2. A restructuring of the apical brush-border membrane was seen by electron microscopy. The hPepT1-mediated transepithelial (A-to-B) peptide flux across the Caco-2 monolayers showed no significant alteration in AICAR-treated cells. The electrical resistance in the AICAR-treated monolayers was significantly higher compared with control cells. Inhibition of the sodium/hydrogen exchanger 3 (NHE3) had an additive effect to AICAR, suggesting that the AMPK effect is not via NHE3. Fluorescence measurement of intracellular pH showed no reduction in the proton gradient driving PepT1-mediated apical uptake. The reduction in apical hPepT1 protein and dipeptide uptake after AICAR treatment in Caco-2 cells demonstrates a regulatory effect of AMPK on hPepT1, along with an influence on both the microvilli and tight junction structures. The absence of an associated reduction in transepithelial peptide movement implies an additional stimulatory effect of AICAR on the basolateral peptide transport system in these cells. These results provide a link between the hPepT1 transporter and the metabolic state of this model enterocyte.
机译:5-氨基咪唑-4-羧酰胺 - 核糖核苷(AICAR)活化在模型上放射性标记二肽的运输[(3)H] -D-PHE-L-GLN的运输上的5-氨基咪唑-4-甲酰胺 - 核糖核苷(AICAR)活化的影响在人上皮结肠癌细胞系中Caco-2。 [(3)H] -D-PHE-L-GLN的摄取和Transepithelial助熔剂在分化的Caco-2细胞单层中进行,HPEPT1和葡萄糖转运蛋白水平通过免疫元电子显微镜量化。 AICAR治疗CaCO-2细胞显着抑制顶端[(3)H] -D-PHE-L-GLN吸收,通过刷边膜HPEPT1蛋白的减少匹配,但随着促进的葡萄糖转运蛋白GLUT2的伴随增加。电子显微镜观察到顶端刷界膜的重组。通过CaCO-2单层的HPEPT1介导的Transepelial(A-TO-B)肽通量显示出AiCar处理的细胞没有显着的改变。与对照细胞相比,AICAR处理的单层中的电阻显着高得多。钠/氢气交换器3(NHE3)对AICAR的添加作用,表明AMPK效应不通过NHE3。细胞内pH的荧光测量显示出质子梯度驱动Pept1介导的顶端摄取的不降低。在CaCO-2细胞中AICAR治疗后的顶端HPEPT1蛋白和二肽摄取的降低证明了AMPK对HPEPT1的调节作用,以及对微毛虫和紧密结结构的影响。没有相关的降低的TRANSEPITHELIAL肽运动的缺失意味着AICAR在这些细胞中的基底外侧肽输送系统上的额外刺激作用。这些结果提供了HPEPT1转运蛋白与该模型肠细胞的代谢状态之间的联系。

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