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氨基酸与单糖在肠刷状缘膜上相互作用的动力学研究。

A kinetic study of the interactions between amino acids and monosaccharides at the intestinal brush-border membrane.

作者信息

Alvarado F, Robinson J W

出版信息

J Physiol. 1979 Oct;295:457-75. doi: 10.1113/jphysiol.1979.sp012980.

Abstract
  1. The influx of amino acids into guinea-pig intestinal rings in vitro is inhibited by monosaccharides, and that of monosaccharides by amino acids. Two hypotheses have been proposed to account for these heterologous interactions. According to the first, the cis hypothesis, there is an allosteric interaction between substrates binding to separate but related sites at the outer face of the brush-border membrane matrix. In contrast, the trans hypothesis envisages the interaction to result from a partial dissipation of the electrochemical sodium gradient due to the cotransport of each substrate with sodium ions. 2. In an attempt to distinguish between the merits of the two hypotheses, we examined the kinetics of the inhibition of phenylalanine influx by two sugars of widely different affinities, galactose and beta-methylglucoside. Since beta-methylglucoside carries more sodium into the cell than galactose, the trans hypothesis would predict it to be the stronger inhibitor, but in fact the opposite result is found. 3. Equations were developed to describe the inhibitions in accordance with the cis hypothesis. The satisfactory agreement between experimental observations and theoretical predictions provides support for the applicability of the model. Further implications of the polyfunctional carrier model are discussed.
摘要
  1. 体外实验中,豚鼠肠段对氨基酸的摄取会受到单糖的抑制,而单糖的摄取则会受到氨基酸的抑制。针对这些异源相互作用,人们提出了两种假说。第一种是顺式假说,即底物与刷状缘膜基质外表面上不同但相关的位点结合时,存在变构相互作用。相比之下,反式假说认为这种相互作用是由于每种底物与钠离子协同转运导致电化学钠梯度部分耗散所致。2. 为了区分这两种假说的优劣,我们研究了两种亲和力差异很大的糖——半乳糖和β-甲基葡萄糖苷对苯丙氨酸摄取抑制的动力学。由于β-甲基葡萄糖苷比半乳糖携带更多的钠进入细胞,反式假说预测它会是更强的抑制剂,但实际上却得到了相反的结果。3. 根据顺式假说建立了描述抑制作用的方程。实验观察结果与理论预测之间的良好一致性为该模型的适用性提供了支持。还讨论了多功能载体模型的进一步意义。

相似文献

3
Transport of sugars and amino acids across guinea pig small intestine.糖和氨基酸在豚鼠小肠中的转运。
Biochim Biophys Acta. 1980 Apr 10;597(2):411-7. doi: 10.1016/0005-2736(80)90117-0.

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