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红细胞胆碱转运系统中结合作用的静电贡献。

The electrostatic contribution to binding in the choline transport system of erythrocytes.

作者信息

Krupka R M, Devés R

出版信息

J Biol Chem. 1980 Sep 25;255(18):8546-9.

PMID:7410375
Abstract

Half-saturation constants have been determined for the choline carrier with cationic substrates and their uncharged carbon analogs: (a) choline and 3,3-dimethyl-1-butanol and (b) 2-dimethylaminoethanol and isoamyl alcohol. The constants are 6.3 microM and 16 mM for the first pair, and 19 microM and 45mM for the second. In both cases, the charged molecules have the higher affinity by a factor of more than 2000. This is to be compared with a factor of less than 10 for charged and neutral substrates of acetylcholinesterase, and with a similar factor in antigen-antibody reactions. To account for the unusually strong ionic bond, a very close association between the carrier site and the substrate is suggested, probably with exclusion of water of hydration. This is supported by the fact that gradual replacement of N-methyl groups in the substrate by N-ethyl groups sharply reduces affinity for the carrier with a 110-fold reduction overall, but has no significant effect on the enzymes.

摘要

已确定胆碱载体与阳离子底物及其不带电荷的碳类似物的半饱和常数

(a) 胆碱和3,3 - 二甲基 - 1 - 丁醇,以及(b) 2 - 二甲基氨基乙醇和异戊醇。第一对的常数分别为6.3微摩尔和16毫摩尔,第二对为19微摩尔和45毫摩尔。在这两种情况下,带电荷的分子亲和力更高,相差超过2000倍。相比之下,乙酰胆碱酯酶的带电荷和中性底物的这一倍数小于10,抗原 - 抗体反应中也是类似倍数。为了解释这种异常强的离子键,有人提出载体位点与底物之间存在非常紧密的结合,可能排除了水化水。以下事实支持了这一点:底物中的N - 甲基基团逐渐被N - 乙基基团取代会大幅降低对载体的亲和力,总体降低110倍,但对酶没有显著影响。

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