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双相动力学曲线以及区分和描述S37腹水肿瘤细胞中氨基酸转运位点的特定类似物。

Biphasic kinetic plots and specific analogs distinguishing and describing amino acid transport sites in S37 ascites tumor cells.

作者信息

Matthews R H, Sardovia M, Lewis N J, Zand R

出版信息

Biochim Biophys Acta. 1975 Jun 25;394(2):182-92. doi: 10.1016/0005-2736(75)90256-4.

Abstract

Curve-fitting procedures indicated that exo-2-amino-bicyclo-(2,2,1)-heptane-2-carboxylic acid (BCH) modified V and Km for one of two systems serving for histidine transport into the S37 ascites tumor cells. When this system was obliterated by leucine in the medium, BCH had no effect on histidine transport. Curve-fitting procedures similarly suggest N-methyl-alpha-aminoisobutyric acid affected the Km and V values for the other histidine-transporting system and that carboxymethylhistidine (His(Cm)) inhibited both transport systems. His(Cm) further inhibited histidine uptake into leucine-inhibited cells. Km and V values were altered simultaneously in the presence of several inhibitory analogs. Alanine methyl ester markedly inhibited high-concentration histidine uptake, whereas leucine methyl ester markedly inhibited low-concentration histidine uptake. The present results confirm earlier suggestions that our high c system is Christensen's A system and our low c system his L system. We also confirm a very high degree of specificity of N-methyl-alpha-aminoisobutyric acid for the A or high c system, and of BCH for the L or low c system. We suggest the utility of combining two approaches to the study of transport system properties; use of specific analogs and modification of biphasic plots. We demonstrate that the carboxyl group is not a prerequisite molecular feature for inhibitory interaction with the A or L system.

摘要

曲线拟合程序表明,外消旋 - 2 - 氨基 - 双环 -(2,2,1)- 庚烷 - 2 - 羧酸(BCH)改变了用于组氨酸转运进入S37腹水肿瘤细胞的两个系统之一的V和Km。当该系统被培养基中的亮氨酸消除时,BCH对组氨酸转运没有影响。曲线拟合程序同样表明N - 甲基 - α - 氨基异丁酸影响了另一个组氨酸转运系统的Km和V值,并且羧甲基组氨酸(His(Cm))抑制了这两个转运系统。His(Cm)进一步抑制了亮氨酸抑制的细胞对组氨酸的摄取。在存在几种抑制类似物的情况下,Km和V值同时发生改变。丙氨酸甲酯显著抑制高浓度组氨酸的摄取,而亮氨酸甲酯显著抑制低浓度组氨酸的摄取。目前的结果证实了早期的推测,即我们的高c系统是克里斯蒂安森的A系统,我们的低c系统是他的L系统。我们还证实了N - 甲基 - α - 氨基异丁酸对A或高c系统具有非常高的特异性,而BCH对L或低c系统具有非常高的特异性。我们建议将两种研究转运系统特性的方法结合起来使用;使用特定的类似物和修改双相图。我们证明羧基不是与A或L系统发生抑制性相互作用的必要分子特征。

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