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Elucidation of different inhibition mechanism of small chemicals on PtdInsP-binding domains using in silico docking experiments

机译:在硅基对接实验中阐明小化学物质对Ptdinsp结合结构域的不同抑制机制

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摘要

Phosphatidylinositides, most negatively charged lipids in cellular membranes, regulate diverse effector proteins through the interaction with their lipid binding domains. We have previously reported inhibitory effect of small chemicals on the interaction between PtdIns(3,4,5)P3 and Btk PH domain. Here, we report that the inhibitory effects of same sets of chemicals on Grp1 PH domain and epsin1 ENTH domain to elucidate diversity of inhibitory mechanisms upon different lipid binding domains. Among the chemicals, chemical 8 showed best inhibition in vitro assay for Grp1 PH domain and epsin1 ENTH domain, and then the interaction between small chemicals and lipid binding domains was further investigated by in silico docking experiments. As a result, it was concluded that the diverse inhibitory effects on different lipid binding domains were dependent on not only the number of interactions between small chemical and domain, but also additional interaction with positively charged surfaces as the secondary binding sites. This finding will help to develop lipid binding inhibitors as antagonists for lipid-protein interactions, and these inhibitors would be novel therapeutic drug candidates via regulating effector proteins involved in severe human diseases.
机译:磷脂酰阳性,在细胞膜中最负荷的脂质,通过与其脂质结合结构域的相互作用调节不同的效应蛋白。我们之前已经报道了小化学物质对PTDINS(3,4,5)P3和BTK pH结构域之间相互作用的抑制作用。在这里,我们报告说,同一组化学品对GRP1 pH结构域和EPSIN1置素结构域的抑制作用,以阐明不同脂质结合结构域的抑制机制的多样性。在化学品中,化学8显示了GRP1 pH结构域和EPSIN1 ent域的体外测定的最佳抑制,然后通过在硅基对接实验中进一步研究小化学品和脂质结合结构域之间的相互作用。结果,得出结论是,不同脂质结合结构域对不同脂质结合结构域的不同抑制作用不仅取决于小化学和结构域之间的相互作用的数量,还依赖于与次级结合位点具有带正电荷的表面的额外相互作用。该发现将有助于开发脂质结合抑制剂作为脂质 - 蛋白质相互作用的拮抗剂,并且这些抑制剂通过调节患有严重人类疾病的效应蛋白是新的治疗药物候选者。

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