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首页> 外文期刊>Physical review, E >Correcting binding parameters for interacting ligand-lattice systems
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Correcting binding parameters for interacting ligand-lattice systems

机译:校正用于相互作用的配体 - 格子系统的绑定参数

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Binding of ligands to macromolecules is central to many functional and regulatory biological processes. Key parameters characterizing ligand-macromolecule interactions are the stoichiometry, inducing the number of ligands permacromolecule binding site, and the dissociation constant, quantifying the ligand-binding site affinity. Both these parameters can be obtained from analyses of classical saturation experiments using the standard binding equation that offers the great advantage of mathematical simplicity but becomes an approximation for situations of interest when a ligand binds and covers more than one single binding site on the macromolecule. Using the framework of car-parking problem with latticelike macromolecules where each ligand can cover simultaneously several consecutive binding sites, we showed that employing the standard analysis leads to underestimation of binding parameters, i.e., ligands appear larger than they actually are and their affinity is also greater than it is. Therefore, we have derived expressions allowing to determine the ligand size and true binding parameters (stoichiometry and dissociation constant) as a function of apparent binding parameters retrieved from standard saturation experiments.
机译:配体与大分子的结合是许多功能和调节生物过程的核心。表征配体 - 大分子相互作用的关键参数是化学计量,诱导配体透明度结合位点的数量,以及解离常数,定量配体结合位点亲和力。通过使用具有数学简单性的标准绑定等式的经典饱和度实验的分析可以从经典饱和实验的分析获得,但是当配体结合并覆盖大分子上的一个以上的单个结合位点时,为感兴趣的情况变为感兴趣的情况的近似。利用随着锯齿状大分子的框架,每个配体同时覆盖几种连续结合位点,我们表明使用标准分析导致低估结合参数,即配体显得比实际更大,它们的亲和力也是如此大于它。因此,我们具有允许确定配体大小和真正结合参数(化学计量和解离常数)的表达式,作为从标准饱和实验中检索的表观结合参数的函数。

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