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IN SILICO EVALUATION OF THE ROLE OF PHYTOCHEMICALS IN ALZHEIMER'S DISEASE THROUGH WNT SIGNALING MODULATION

机译:在Silico评价通过WNT信号调制在阿尔茨海默病中植物化学中的作用

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Alzheimer's disease(AD)is an irreversible,progressive and the most common reason for neurodegenerative disease.Wnt signaling plays important role during embryonic CNS development and is involved in neuronal induction,self-renewal,polarity,and synaptogenesis.1 Alteration in the Wnt Signaling pathway has been linked with age-related diseases like osteoporosis,colon cancer,Parkinson and AD.2 Several studies indicate that disruption of Wnt signaling particularly,canonical Wnt pathway contributes to AD pathogenesis.This study aims to evaluate the role of phytochemical in modulating Wnt signaling pathway by targeting the negative regulators of Wnt signaling.WIF1(Wnt inhibitory factor 1)is the protein that binds to Wnt proteins making them unavailable and hence inhibiting the Wnt signaling.3 Low density lipoprotein receptor related protein 6(Lrp6)is the co-receptor that along with Frizzled receptor is involved in the activation of Wnt signaling.Dickkopf 1(Dkk1)is the antagonist of Wnt signaling pathway that act by binding with LRP6 and leading to its degradation.4Glycogen synthase kinase-3|3(GSK-3 P)forms multimeric degradation complex that results in the degradation of P-catenin and inhibition of Wnt signaling pathway.5 All these four proteins are important targets for Wnt signaling inhibition that serves the purpose for modulating Wnt pathway.
机译:阿尔茨海默氏病(AD)是一种不可逆的,渐进性和神经退行性disease.Wnt信号的最常见原因胚胎中枢神经系统发育过程中起重要作用,并参与神经感应,自我更新,极性和synaptogenesis.1维修在Wnt信号途径已与骨质疏松症,结肠癌,帕金森和Ad的年龄相关的疾病有关。几项研究表明,WNT信号传导的破坏,特别是典型的Wnt途径有助于促进发病机制。本研究旨在评估植物化学在调节WNT中的作用通过靶向Wnt信号传导的负调节器的信号通路.wif1(wnt抑制因子1)是与Wnt蛋白结合的蛋白质,使得它们不可用,因此抑制Wnt信号传导3低密度脂蛋白受体相关蛋白6(LRP6)是CO - 与Frizzled受体一起参与Wnt Signaling.dickkopf 1(DKK1)的激活者是WNT信号的拮抗剂通过与LRP6结合并导致其降解的NG途径.4糖苷合酶激酶-3 | 3(GSK-3 P)形成多聚体降解复合物,导致p-catenin的降解和Wnt信号传导途径的抑制.5所有这些四种蛋白质是WNT信号传导抑制的重要靶标,该靶向用于调节WNT途径的目的。

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