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使用不可逆抑制剂测试简单载体。

Testing the simple carrier using irreversible inhibitors.

作者信息

Lieb W R, Stein W D

出版信息

Biochim Biophys Acta. 1976 Dec 14;455(3):913-27. doi: 10.1016/0005-2736(76)90060-2.

Abstract
  1. We analyse the kinetics of irreversible inhibition of the simple carrier. We consider how the rate of inactivation is influenced by the concentrations of permeant on the two sides of the membrane. 2. We consider various kinetic schemes for the simple carrier and show that these are all indistinguishable kinetically, using steady-state transport or inactivation data. We point out the advantages of using the simplest kinetic scheme and the possible pitfalls of using more complicated schemes, including the conventional carrier model. 3. We show that in the absence of information on the transport properties of the system, irreversible inhibition data are ambiguous. Taken together with transport data, however, inactivation data provide new tests for the applicability of the simple carrier. 4. The new tests show that for the simple carrier model to be applicable, the substrate dependencies of transport and of inactivation must be identical in comparable experimental situations. Further, the maximal rates of transport and of stimulation (or inhibition) of inactivation must obey a simple relationship, which we derive. We illustrate the use of these tests with published data on the glucose and choline transport systems of the human red blood cell.
摘要
  1. 我们分析了简单载体不可逆抑制的动力学。我们考虑膜两侧通透剂浓度如何影响失活速率。2. 我们考虑了简单载体的各种动力学方案,并表明使用稳态转运或失活数据时,这些方案在动力学上都是无法区分的。我们指出了使用最简单动力学方案的优点以及使用更复杂方案(包括传统载体模型)可能存在的陷阱。3. 我们表明,在缺乏关于系统转运特性的信息时,不可逆抑制数据是模糊的。然而,与转运数据一起,失活数据为简单载体的适用性提供了新的测试。4. 新的测试表明,要使简单载体模型适用,在可比的实验情况下,转运和失活的底物依赖性必须相同。此外,转运的最大速率和失活的刺激(或抑制)的最大速率必须遵循一个简单的关系,我们推导了这个关系。我们用关于人类红细胞葡萄糖和胆碱转运系统的已发表数据说明了这些测试的用法。

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