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极性敏感疏水分子与红细胞和非红细胞血影蛋白的结合:荧光和分子建模研究。

Binding of polarity-sensitive hydrophobic ligands to erythroid and nonerythroid spectrin: fluorescence and molecular modeling studies.

机构信息

a Chemistry Department , University of Calcutta , Kolkata , 700009 , India .

出版信息

J Biomol Struct Dyn. 2014;32(6):852-65. doi: 10.1080/07391102.2013.793212. Epub 2013 Jun 19.

Abstract

We have used three polarity-sensitive fluorescence probes, 6-propionyl 2-(N,N-dimethyl-amino) naphthalene (Prodan), pyrene and 8-anilino 1-naphthalene sulphonic acid, to study their binding with erythroid and nonerythroid spectrin, using fluorescence spectroscopy. We have found that both bind to prodan and pyrene with high affinities with apparent dissociation constants (Kd) of .50 and .17 μM, for prodan, and .04 and .02 μM, for pyrene, respectively. The most striking aspect of these bindings have been that the binding stoichiometry have been equal to 1 in erythroid spectrin, both in dimeric and tetrameric form, and in tetrameric nonerythroid spectrin. From an estimate of apparent dielectric constants, the polarity of the binding site in both erythroid and nonerythroid forms have been found to be extremely hydrophobic. Thermodynamic parameters associated with such binding revealed that the binding is favored by positive change in entropy. Molecular docking studies alone indicate that both prodan and pyrene bind to the four major structural domains, following the order in the strength of binding to the Ankyrin binding domain > SH3 domain > Self-association domain > N-terminal domain of α-spectrin of both forms of spectrin. The binding experiments, particularly with the tetrameric nonerythroid spectrin, however, indicate more toward the self association domain in offering the unique binding site, since the binding stoichiometry have been 1 in all forms of dimeric and tetrameric spectrin, so far studied by us. Further studies are needed to characterize the hydrophobic binding sites in both forms of spectrin.

摘要

我们使用了三种极性敏感荧光探针,6-丙酰基-2-(N,N-二甲基氨基)萘(Prodan)、芘和 8-苯胺基-1-萘磺酸,通过荧光光谱法研究它们与红细胞和非红细胞血影蛋白的结合。我们发现,这两种探针都与 Prodan 和芘具有高亲和力,表观解离常数(Kd)分别为.50 和.17 μM(对于 Prodan)和.04 和.02 μM(对于芘)。这些结合的最显著特征是,在红细胞血影蛋白中,无论是二聚体还是四聚体形式,以及在四聚体非红细胞血影蛋白中,结合的化学计量比都等于 1。根据表观介电常数的估计,在红细胞和非红细胞形式中,结合位点的极性都被发现是极其疏水的。与这种结合相关的热力学参数表明,结合有利于熵的正变化。单独的分子对接研究表明,Prodan 和芘都结合到四个主要结构域,按照与锚蛋白结合域结合强度的顺序排列 > SH3 结构域 > 自我组装结构域 > 两种形式的α-血影蛋白的 N 端结构域。然而,结合实验,特别是与四聚体非红细胞血影蛋白的结合实验,表明在提供独特结合位点方面,自我组装结构域的作用更大,因为迄今为止,我们研究的所有形式的二聚体和四聚体血影蛋白的结合化学计量比都为 1。需要进一步的研究来表征两种形式的血影蛋白中的疏水结合位点。

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