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Docking of Human Heat Shock Protein 90 with Selenoderivatives of Geldanamycin

机译:人类热休克蛋白90与格尔德霉素硒代衍生物的对接

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The interference of human heat shock protein 90 (HSP90) in many signalling net works associated with cancer progression makes it an important drug ta rget. In the present work, we investigated the binding ability of 9 selenoderivatives of geldanamycin (GMDSe) at the N-terminal domain of HSP90 derived from Protein Data Bank (PDB code: 1YET) based on ligand-protein d ocking. All selenoderivatives interacted positively with HSP90, yet the bin ding strength decreased when replacing monovalent oxygen in position 1 (GMDSe1) or 9 (GMDSe9). Hydrogen-bonding and lipophilic interactions between selenoderivatives and amino acid residues in the inhibitor site of HSP90 were thermodynamically the main forces driving the binding stability. Molecular electrostatic potential surfaces of the selenoderivatives showed marked non polar areas, which were probably involved in the lipophilic interactions with the hydrophobic residues of amino acids. Interestingly, the amino acid residues forming the hydrogen bonds with GMD were also involved in the hydrogen-bonding interactions with the selenoderivatives. Moreover, HSP90 interacted with the GMDSe6 and GMDSe7 selenoderivatives stronger than with GMD, while maintaining lipophilic interactions and hydrogen bonds with amino acid residues like Asp93, which are catalytically crucial for therapeutic properties of HSP90 inhibitors. This finding should guide further studies of pharmacophore properties of GMD selenoderivatives in order to explore their therapeutic properties. It is noteworthy that selenium has been suggested to reduce the risk of various types of cancers.
机译:人类热休克蛋白90(HSP90)在许多与癌症进展相关的信号传递网络中的干扰使其成为重要的药物靶标。在目前的工作中,我们基于配体-蛋白质对接研究了9种硒代格尔德霉素(GMDSe)在HSP90 N末端结构域的结合能力,该HSP90来源于蛋白质数据库(PDB代码:1YET)。所有硒代衍生物均与HSP90呈正向相互作用,但当替换位置1(GMDSe1)或位置9(GMDSe9)的单价氧时,结合强度降低。 HSP90抑制剂位点的硒代衍生物与氨基酸残基之间的氢键键合和亲脂性相互作用是热力学驱动结合稳定性的主要动力。亚硒代衍生物的分子静电势表面显示出明显的非极性区域,该区域可能参与了与氨基酸疏水残基的亲脂性相互作用。有趣的是,与GMD形成氢键的氨基酸残基也参与了与亚硒代衍生物的氢键相互作用。此外,HSP90与GMDSe6和GMDSe7硒代衍生物的相互作用比与GMD的相互作用更强,同时保持亲脂性相互作用和与氨基酸残基(如Asp93)的氢键,这对于HSP90抑制剂的治疗特性具有催化作用。该发现应指导GMD硒代衍生物的药效基团性质的进一步研究,以探索其治疗性质。值得注意的是,已经提出硒可以降低各种类型癌症的风险。

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