首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Independent modulation by food supply of two distinct sodium-activated D-glucose transport systems in the guinea pig jejunal brush-border membrane.
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Independent modulation by food supply of two distinct sodium-activated D-glucose transport systems in the guinea pig jejunal brush-border membrane.

机译:食物供应对豚鼠空肠刷膜的两个不同的钠活化D-葡萄糖转运系统的食物供给进行独立调节。

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摘要

D-glucose transport across the intestinal brush-border membrane involves two transport systems designated here as systems 1 and 2. Kinetic properties for both D-glucose and methyl alpha-D-glucopyranoside transport were measured at 35 degrees C by using brush-border membrane vesicles prepared from either control, fasted (48 hr), or semistarved (10 days) animals. The results show the following: (i) The sugar influx rate by simple diffusion was identical under either altered condition. (ii) Semistarvation stimulated D-glucose uptake by system 2 (both its Vmax and Km increased), whereas system 1 was untouched. (iii) Fasting increased the capacity of system 1 without affecting either Km of system 1 or Vmax and Km of system 2. The effect of fasting on Vmax of system 1 cannot be attributed to indirect effects from changes in ionic permeability because the kinetic difference between control and fasted animals persisted when the membrane potential was short-circuited with equilibrated K+ and valinomycin. This work provides further evidence for the existence of two distinct sodium-activated D-glucose transport systems in the intestinal brush-border membrane, which adapt independently to either semistarvation or fasting.
机译:D-葡萄糖在肠道刷状边界膜上的转运涉及两个转运系统,此处分别称为系统1和2。D-葡萄糖和甲基α-D-吡喃葡萄糖苷转运的动力学特性是在35摄氏度下使用刷状边界膜测量的由对照,禁食(48小时)或半饥饿(10天)的动物制备的囊泡。结果表明:(i)在任何改变的条件下,通过简单扩散的糖流入速率是相同的。 (ii)半饥饿刺激了系统2吸收D-葡萄糖(其Vmax和Km均增加),而系统1未被触及。 (iii)禁食增加了系统1的容量,而不影响系统1的Km或系统2的Vmax和Km。禁食对系统1的Vmax的影响不能归因于离子渗透率变化的间接影响,因为两者之间的动力学差异当用平衡的K +和缬氨霉素使膜电位短路时,对照组和禁食动物仍然存在。这项工作为肠刷状边界膜中存在两个不同的钠活化D葡萄糖转运系统提供了进一步的证据,它们独立地适应半饥饿或禁食。

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