首页> 美国卫生研究院文献>Biochemical Journal >Regulation of GLUT5 GLUT2 and intestinal brush-border fructose absorption by the extracellular signal-regulated kinase p38 mitogen-activated kinase and phosphatidylinositol 3-kinase intracellular signalling pathways: implications for adaptation to diabetes.
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Regulation of GLUT5 GLUT2 and intestinal brush-border fructose absorption by the extracellular signal-regulated kinase p38 mitogen-activated kinase and phosphatidylinositol 3-kinase intracellular signalling pathways: implications for adaptation to diabetes.

机译:GLUT5GLUT2和肠道刷状边界果糖吸收的细胞外信号调节激酶p38丝裂原活化激酶和磷脂酰肌醇3激酶胞内信号通路的调节:对糖尿病适应的影响。

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摘要

We have investigated the role of the extracellular signal-regulated kinase (ERK), p38 and phosphatidylinositol 3-kinase (PI 3-kinase) pathways in the regulation of intestinal fructose transport. Different combinations of anisomycin, PD98059 and wortmannin had very different effects on fructose transport in perfused isolated loops of rat jejunum. Transport was stimulated maximally by anisomycin (2 microM) and blocked by SB203580 (20 microM), confirming involvement of the p38 pathway. PD98059 (50 microM) alone had little effect on fructose transport. However, it had a dramatic effect on stimulation by anisomycin, diminishing the K(a) 50-fold from 1 microM to 20 nM to show that the ERK pathway restrains the p38 pathway. The K(a) for diabetic jejunum was 30 nM and PD98059 had no effect. Transport in the presence of anisomycin was 3.4-fold that for anisomycin plus PD98059 plus wortmannin. Transport was mediated by both GLUT5 and GLUT2. In general, GLUT2 levels increased up to 4-fold within minutes and with only minimal changes in GLUT5 or SGLT1 levels, demonstrating that GLUT2 trafficks by a rapid trafficking pathway distinct from that of GLUT5 and SGLT1. GLUT2 intrinsic activity was regulated over a 9-fold range. It is concluded that there is extensive cross-talk between the ERK, p38 and PI 3-kinase pathways in their control of brush-border fructose transport by modulation of both the levels and intrinsic activities of GLUT5 and GLUT2. The potential of the intracellular signalling pathways to regulate short-term nutrient transport during the assimilation of a meal and longer-term adaptation to diabetes and hyperglycaemia is discussed.
机译:我们调查了细胞外信号调节激酶(ERK),p38和磷脂酰肌醇3-激酶(PI 3-激酶)通路在肠道果糖运输的调节中的作用。 Anisomycin,PD98059和wortmannin的不同组合对大鼠空肠灌注孤立环中果糖转运的影响非常不同。茴香霉素(2 microM)最大程度地刺激了运输,并被SB203580(20 microM)阻止,证实了p38途径的参与。单独使用PD98059(50 microM)对果糖转运几乎没有影响。但是,它对茴香霉素的刺激具有显着影响,将K(a)的50倍从1 microM减少到20 nM,表明ERK途径抑制了p38途径。糖尿病空肠的K(a)为30 nM,PD98059无作用。有茴香霉素存在时的转运是茴香霉素加PD98059加渥曼青霉素的3.4倍。转运是由GLUT5和GLUT2介导的。通常,GLUT2的水平在几分钟内增加了4倍,并且GLUT5或SGLT1的水平变化很小,这表明GLUT2通过不同于GLUT5和SGLT1的快速运输途径进行运输。 GLUT2的内在活性被调节在9倍的范围内。结论是,通过调节GLUT5和GLUT2的水平和内在活性,ERK,p38和PI 3-激酶通路在刷状果糖转运控制中存在广泛的相互影响。讨论了膳食同化过程中细胞内信号传导途径调节短期营养物质运输以及对糖尿病和高血糖症长期适应的潜力。

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