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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >MODELING OF THREE DIMENSIONAL STRUCTURE OF HUMAN ALPHA-FETOPROTEIN COMPLEXED WITH DIETHYLSTILBESTROL: DOCKING AND MOLECULAR DYNAMICS SIMULATION STUDY
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MODELING OF THREE DIMENSIONAL STRUCTURE OF HUMAN ALPHA-FETOPROTEIN COMPLEXED WITH DIETHYLSTILBESTROL: DOCKING AND MOLECULAR DYNAMICS SIMULATION STUDY

机译:人α-胎蛋白与二乙基硬脂醇复合的三维结构建模:对接和分子动力学模拟研究

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It has been long experimentally demonstrated that human alpha-fetoprotein (HAFP) has an ability to bind immobilized estrogens with the most efficiency for synthetic estrogen analog — diethylstilbestrol (DES). However, the question remains why the human AFP (HAFP), unlike rodent AFP, cannot bind free estrogens. Moreover, despite the fact that AFP was first discovered more than 50 years ago and is presently recognized as a "golden standard" among onco-biomarkers, its three-dimensional (3D) structure has not been experimentally solved yet. In this work using MODELLER program, we generated 3D model of HAFP on the basis of homology with human serum albumin (HSA) and Vitamin D–binding protein (VTDB) with subsequent molecular docking of DES to the model structure and molecular dynamics (MD) simulation study of the complex obtained. The model constructed has U-shaped structure in which a cavity may be distinguished. In this cavity the putative estrogen-binding site is localized. Validation by RMSD calculation and with the use of PROCHECK program showed good quality of the model and stability of extended region of four alpha-helical structures that contains putative hormone-binding residues. Data extracted from MD simulation trajectory allow proposing two types of interactions between amino acid residues of HAFP and DES molecule: (1) hydrogen bonding with involvement of residues S445, R452, and E551; (2) hydrophobic interactions with participation of L138, M448, and M548 residues. A suggestion is made that immobilization of the hormone using a long spacer provides delivery of the estrogen molecule to the binding site and, thereby, facilitates interaction between HAFP and the hormone.
机译:长期以来,实验已经证明,人α甲胎蛋白(HAFP)具有以合成雌激素类似物-己烯雌酚(DES)最有效的方式结合固定的雌激素的能力。然而,问题仍然是,为什么人类AFP(HAFP)与啮齿动物AFP不同,不能结合游离雌激素。此外,尽管事实上AFP早在50多年前就被发现,并且目前被认为是癌生物标志物的“黄金标准”,但其三维(3D)结构尚未通过实验解决。在这项工作中,我们使用MODELLER程序,在与人血清白蛋白(HSA)和维生素D结合蛋白(VTDB)同源的基础上,通过随后的DES与模型结构和分子动力学(MD)的对接,建立了HAFP的3D模型。仿真研究得到的复合物。构造的模型具有U型结构,可以在其中区分出空腔。在该腔中,假定的雌激素结合位点被定位。通过RMSD计算和使用PROCHECK程序进行的验证表明,该模型具有良好的质量,并具有四个推定的激素结合残基的α-螺旋结构的扩展区域的稳定性。从MD模拟轨迹中提取的数据可以提出HAFP和DES分子的氨基酸残基之间的两种相互作用:(1)氢键结合残基S445,R452和E551; (2)L138,M448和M548残基参与的疏水相互作用。有人提出使用长间隔基团固定激素可将雌激素分子传递至结合位点,从而促进HAFP与激素之间的相互作用。

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