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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Discovery of non-peptidic small molecule inhibitors of cyclophilin D as neuroprotective agents in A beta-induced mitochondrial dysfunction
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Discovery of non-peptidic small molecule inhibitors of cyclophilin D as neuroprotective agents in A beta-induced mitochondrial dysfunction

机译:在β诱导的线粒体功能障碍中发现环托磷素D作为神经保护剂的非肽小分子抑制剂

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Cyclophilin D (CypD) is a mitochondria-specific cyclophilin that is known to play a pivotal role in the formation of the mitochondrial permeability transition pore (mPTP).The formation and opening of the mPTP disrupt mitochondrial homeostasis, cause mitochondrial dysfunction and eventually lead to cell death. Several recent studies have found that CypD promotes the formation of the mPTP upon binding to beta amyloid (A beta) peptides inside brain mitochondria, suggesting that neuronal CypD has a potential to be a promising therapeutic target for Alzheimer's disease (AD). In this study, we generated an energy-based pharmacophore model by using the crystal structure of CypD-cyclosporine A (CsA) complex and performed virtual screening of ChemDiv database, which yielded forty-five potential hit compounds with novel scaffolds. We further tested those compounds using mitochondrial functional assays in neuronal cells and identified fifteen compounds with excellent protective effects against A beta-induced mitochondrial dysfunction. To validate whether these effects derived from binding to CypD, we performed surface plasmon resonance (SPR)-based direct binding assays with selected compounds and discovered compound 29 was found to have the equilibrium dissociation constants (K-D) value of 88.2 nM. This binding affinity value and biological activity correspond well with our predicted binding mode. We believe that this study offers new insights into the rational design of small molecule CypD inhibitors, and provides a promising lead for future therapeutic development.
机译:细胞环素D(CYPD)是一种线粒体特异性环疗素,已知在形成线粒体渗透性过渡孔(MPTP)中发挥枢转作用。MPTP破坏线粒体稳态的形成和开放,导致线粒体功能障碍,最终导致线粒体功能障碍。细胞死亡。最近的几项研究发现CYPD促进MPTP在脑线粒体内结合β淀粉样蛋白(β)肽时形成MPTP,这表明神经元CYPD具有对阿尔茨海默病(AD)的有前途治疗靶标的可能性。在该研究中,我们通过使用CYPD-Cyclosperina A(CSA)复合物的晶体结构并进行了ChemDIV数据库的虚拟筛选,产生了基于能量的药种模型,从而产生了具有新型支架的45个潜在的麦克风。我们进一步在神经细胞中使用线粒体功能测定方法测试了这些化合物,并确定了对β诱导的线粒体功能障碍具有优异的保护作用的十五种化合物。为了验证是否衍生自与CYPD结合的这些效果,我们进行了表面等离子体共振(SPR),基于选定化合物和发现的化合物29的直接结合测定具有88.2nm的平衡解离常数(K-D)值。这种结合亲和力值和生物活性与我们预测的绑定模式很好。我们认为,本研究提供了新的洞察力设计小分子Cypd抑制剂的理性设计,并提供了未来治疗发展的有希望的铅。

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