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首页> 外文期刊>Journal of Colloid and Interface Science >A fractal analysis of analyte-estrogen receptor binding and dissociation kinetics using biosensors: environmental effects
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A fractal analysis of analyte-estrogen receptor binding and dissociation kinetics using biosensors: environmental effects

机译:使用生物传感器的分析物-雌激素受体结合和解离动力学的分形分析:环境影响

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A fractal. analysis is used to model the binding and dissociation kinetics between analytes in solution and estrogen receptors (ER) immobilized on a sensor chip of a surface plasmon resonance (SPR) biosensor. Both cases are analyzed: unliganded as well as liganded. The influence of different ligands is also analyzed. A better understanding of the kinetics provides physical insights into the interactions and suggests means by which appropriate interactions (to promote correct signaling) and inappropriate interactions such as with xenoestrogens (to minimize inappropriate signaling and signaling deleterious to health) may be better controlled. The fractal approach is applied to analyte-ER interaction data available in the literature. Numerical values obtained for the binding and the dissociation rate coefficients are linked to the degree of roughness or heterogeneity (fractal dimension, D-f) present on the biosensor chip surface. In general, the binding and the dissociation rate coefficients are very sensitive to the degree of heterogeneity on the surface. For example, the binding rate coefficient, k, exhibits a 4.60 order of dependence on the fractal dimension, Df, for the binding of unliganded and liganded VDR mixed with GST-RXR in solution to Spp-1 VDRE (1,25-dihydroxyvitamin D-3 receptor element) DNA immobilized on a sensor chip surface (Cheskis and Freedman, Biochemistry 35 (1996) 3300-3318). A single-fractal analysis is adequate in some cases. In others (that exhibit complexities in the binding or the dissociation curves) a dual-fractal analysis is required to obtain a better fit. A predictive relationship is also presented for the ratio K-A (= k/k(d)) as a function of the ratio of the fractal dimensions (D-f / D-fd). This has biomedical and environmental implications in that the dissociation and binding rate coefficients may be used to alleviate deleterious effects or enhance beneficial effects by selective modulation of the surface. The K-A exhibits a 11/2-order dependence on the ratio of the fractal dimensions for the ligand effects on VDR-RXR interaction with specific DNA. (C) 2003 Elsevier Inc. All rights reserved. [References: 34]
机译:分形。分析用于模拟溶液中分析物与固定在表面等离振子共振(SPR)生物传感器传感器芯片上的雌激素受体(ER)之间的结合和解离动力学。分析这两种情况:未配体以及配体。还分析了不同配体的影响。对动力学的更好理解提供了对相互作用的物理洞察力,并提出了可以更好地控制适当的相互作用(促进正确的信号传导)和不适当的相互作用(例如与异雌激素的相互作用(以最小化不适当的信号传导和对健康有害的信号传导))的手段。分形方法适用于文献中可用的分析物-ER相互作用数据。获得的结合和解离速率系数的数值与存在于生物传感器芯片表面上的粗糙度或异质性(分数维,D-f)有关。通常,结合和解离速率系数对表面上的异质度非常敏感。例如,结合率系数k对分形维数Df表现出4.60阶的依赖性,即溶液中混有GST-RXR的未配体和配体VDR与Spp-1 VDRE(1,25-二羟基维生素D -3受体元件)固定在传感器芯片表面的DNA(Cheskis and Freedman,Biochemistry 35(1996)3300-3318)。在某些情况下,单分形分析就足够了。在其他情况下(在结合或解离曲线中表现出复杂性),需要进行双分形分析才能获得更好的拟合度。还给出了比率K-A(= k / k(d))的预测关系,该关系是分形维数比率(D-f / D-fd)的函数。这具有生物医学和环境意义,因为解离和结合速率系数可用于通过选择性调节表面来减轻有害作用或增强有益作用。对于配体对VDR-RXR与特定DNA相互作用的影响,K-A表现出对分形尺寸之比的11/2级依赖性。 (C)2003 Elsevier Inc.保留所有权利。 [参考:34]

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