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在有和没有配体 ATP 和半乳糖的情况下 Gal1p 和 Gal3p 蛋白的分子模拟和对接研究:对 GAL 基因转录激活的影响。

Molecular simulation and docking studies of Gal1p and Gal3p proteins in the presence and absence of ligands ATP and galactose: implication for transcriptional activation of GAL genes.

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

J Comput Aided Mol Des. 2012 Jul;26(7):847-64. doi: 10.1007/s10822-012-9579-5. Epub 2012 May 26.

Abstract

The Gal4p mediated transcriptional activation of GAL genes requires the interaction between Gal3p bound with ATP and galactose and Gal80p. Though numerous studies suggest that galactose and ATP activate Gal3p/Gal1p interaction with Gal80p, neither the mechanism of activation nor the interacting surface that binds to Gal80p is well understood. In this study we investigated the dynamics of Gal3p and Gal1p in the presence and absence of ligands ATP and galactose to understand the role played by dynamics in the function of these proteins through molecular dynamics simulation and protein-protein docking studies. We performed simulations totaling to 510 ns on both Gal1p and Gal3p proteins in the presence and absence of ligands ATP and galactose. We find that, while binding of ligands ATP and galactose to Gal3p/Gal1p do not affect the global conformation of proteins, some local conformational changes around upper-lip helix including insertion domain are observed. We observed that only in the presence of ATP and galactose, Gal3p displays opening and closing motion between the two domains. And because of this motion, a binding interface, which is largely hydrophobic, opens up on the surface of Gal3p and this surface can bind to Gal80p. From our simulation studies we infer probable docking sites for Gal80p on Gal3p/Gal1p, which were further ascertained by the docking of Gal80p on to ligand bound Gal1p and Gal3p proteins, and the residues at the interface between Gal3p and Gal80p are identified. Our results correlate quite well with the existing body of literature on functional and dynamical aspects of Gal1p and Gal3p proteins.

摘要

Gal4p 介导的 GAL 基因转录激活需要 Gal3p 与 ATP 和半乳糖结合以及 Gal80p 的相互作用。尽管有大量研究表明半乳糖和 ATP 可激活 Gal3p/Gal1p 与 Gal80p 的相互作用,但激活机制以及与 Gal80p 结合的相互作用表面仍未得到很好的理解。在这项研究中,我们研究了配体 ATP 和半乳糖存在和不存在时 Gal3p 和 Gal1p 的动力学,以通过分子动力学模拟和蛋白质-蛋白质对接研究了解动力学在这些蛋白质功能中的作用。我们对存在和不存在配体 ATP 和半乳糖的 Gal1p 和 Gal3p 蛋白分别进行了总计 510 ns 的模拟。我们发现,尽管配体 ATP 和半乳糖与 Gal3p/Gal1p 的结合不影响蛋白质的整体构象,但在包括插入结构域在内的上唇螺旋周围观察到一些局部构象变化。我们观察到只有在存在 ATP 和半乳糖的情况下,Gal3p 在两个结构域之间才会显示出开合运动。由于这种运动,Gal3p 表面上会打开一个主要是疏水性的结合界面,该界面可以与 Gal80p 结合。通过我们的模拟研究,我们推断出 Gal80p 在 Gal3p/Gal1p 上的可能对接位点,这些位点进一步通过 Gal80p 与配体结合的 Gal1p 和 Gal3p 蛋白的对接得到证实,并且确定了 Gal3p 和 Gal80p 之间界面上的残基。我们的结果与关于 Gal1p 和 Gal3p 蛋白质功能和动力学方面的现有文献相当吻合。

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