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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Sequential ordered mechanism for the sodium-glutamate transport in intestinal brush border membrane vesicles
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Sequential ordered mechanism for the sodium-glutamate transport in intestinal brush border membrane vesicles

机译:肠刷状缘膜囊泡中谷氨酸钠转运的顺序机制

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The glutamate/aspartate carrier localized in the brush-border membrane vesicles from enterocytes is known as a transport system catalyzing a sodium-substrate cotransport driven by the sodium gradient across the membrane. The kinetics of this transport system is studied by analogy with an enzymatic bi-substrate reaction. The results of this approach can be summarized as follows: (1) The dependence of the -glutamate transport rate on the sodium concentration is sigmoidal, and the stoichiometry of the transport is 2 Na+/1 glutamate/1 carrier molecule. (2) The mechanism is sequential ordered, with -glutamate binding after both the sodium cations. In addition, there is a very high degree of cooperativity between the two sodium binding sites.
机译:定位于来自肠细胞的刷状边界膜囊泡中的谷氨酸/天冬氨酸载体是催化由钠梯度跨膜驱动的钠-底物共转运的转运系统。与酶促双底物反应类似地研究了该转运系统的动力学。该方法的结果总结如下:(1)-谷氨酸转运速率对钠浓度的依赖性是S形的,并且转运的化学计量是2 Na + / 1谷氨酸/ 1载体分子。 (2)该机理是有序的,在两个钠阳离子之后均具有-谷氨酸结合。另外,两个钠结合位点之间具有非常高的协同性。

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