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首页> 外文期刊>The Journal of Membrane Biology >A General Channel Model Accounts for Channel, Carrier, Countertransport and Cotransport Kinetics
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A General Channel Model Accounts for Channel, Carrier, Countertransport and Cotransport Kinetics

机译:通用通道模型解释了通道,载体,反向运输和协同运输动力学

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In this work we propose a unifying model of mediated membrane transport, based upon the idea that the integral membrane proteins involved in these processes operate via complex channel mechanisms. In the first part, we briefly review literature about the structural aspects of membrane transporters. We conclude that there is a substantial amount of evidence suggesting that most membrane proteins performing transport are embodied with channel-like structures that may constitute the translocation paths. This includes cases where the phenomenological transport kinetics do not correspond to the classical channel behavior. In the second part of this article we introduce the general channel model of mediated transport and employ it to derive specific examples, like simple one- or two-ligand channels, water-ligand channels, simple carriers, co- and counter-transport systems and more complex water-ligand carriers. We show that, for the most part, these particular cases can be obtained by the application of the techniques of diagram reduction to the full model. The necessary conditions for diagram reduction reflect physical properties of the protein and its surroundings.
机译:在这项工作中,我们提出了介导的膜运输的统一模型,其依据是参与这些过程的完整膜蛋白通过复杂的通道机制起作用。在第一部分中,我们简要回顾了有关膜转运蛋白结构方面的文献。我们得出结论,有大量证据表明大多数执行转运的膜蛋白都带有可能构成易位路径的通道样结构。这包括现象迁移动力学与经典通道行为不符的情况。在本文的第二部分中,我们介绍了介导运输的一般渠道模型,并使用它来推导特定的示例,例如简单的一配体或二配体通道,水配体通道,简单的载体,共同运输和反向运输系统以及更复杂的水配体载体。我们表明,在大多数情况下,可以通过将图归约技术应用于完整模型来获得这些特殊情况。图表还原的必要条件反映了蛋白质及其周围环境的物理特性。

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