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Simple models for the analysis of binding protein-dependent transport systems.

机译:用于分析结合蛋白依赖性转运系统的简单模型。

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摘要

Mathematical modeling was used to evaluate experimental data for bacterial binding protein-dependent transport systems. Two simple models were considered in which ligand-free periplasmic binding protein interacts with the membrane-bound components of transport. In one, this interaction was viewed as a competition with the ligand-bound binding protein, whereas in the other, it was considered to be a consequence of the complexes formed during the transport process itself. Two sets of kinetic parameters were derived for each model that fit the available experimental results for the maltose system. By contrast, a model that omitted the interaction of ligand-free binding protein did not fit the experimental data. Some applications of the successful models for the interpretation of existing mutant data are illustrated, as well as the possibilities of using mutant data to test the original models and sets of kinetic parameters. Practical suggestions are given for further experimental design.
机译:数学建模用于评估细菌结合蛋白依赖性转运系统的实验数据。考虑了两个简单的模型,其中无配体的周质结合蛋白与转运的膜结合成分相互作用。在一种方法中,这种相互作用被视为与配体结合的结合蛋白的竞争,而在另一种方法中,这种相互作用被认为是运输过程本身形成的复合物的结果。为每个模型导出了两组动力学参数,这些参数适合麦芽糖系统的可用实验结果。相比之下,忽略无配体结合蛋白相互作用的模型不符合实验数据。说明了成功模型用于解释现有突变数据的一些应用,以及使用突变数据测试原始模型和动力学参数集的可能性。给出了进一步实验设计的实用建议。

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