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Binding of sulphonated indigo derivatives to RepA-WH1 inhibits DNA-induced protein amyloidogenesis

机译:磺化靛蓝衍生物与RepA-WH1的结合抑制DNA诱导的蛋白质淀粉样蛋白生成

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摘要

The quest for inducers and inhibitors of protein amyloidogenesis is of utmost interest, since they are key tools to understand the molecular bases of proteinopathies such as Alzheimer, Parkinson, Huntington and Creutzfeldt–Jakob diseases. It is also expected that such molecules could lead to valid therapeutic agents. In common with the mammalian prion protein (PrP), the N-terminal Winged-Helix (WH1) domain of the pPS10 plasmid replication protein (RepA) assembles in vitro into a variety of amyloid nanostructures upon binding to different specific dsDNA sequences. Here we show that di- (S2) and tetra-sulphonated (S4) derivatives of indigo stain dock at the DNA recognition interface in the RepA-WH1 dimer. They compete binding of RepA to its natural target dsDNA repeats, found at the repA operator and at the origin of replication of the plasmid. Calorimetry points to the existence of a major site, with micromolar affinity, for S4-indigo in RepA-WH1 dimers. As revealed by electron microscopy, in the presence of inducer dsDNA, both S2/S4 stains inhibit the assembly of RepA-WH1 into fibres. These results validate the concept that DNA can promote protein assembly into amyloids and reveal that the binding sites of effector molecules can be targeted to inhibit amyloidogenesis.
机译:寻找蛋白质淀粉样蛋白生成的诱导剂和抑制剂是最受关注的,因为它们是了解蛋白质病分子基础的关键工具,例如阿尔茨海默病,帕金森病,亨廷顿病和克雅氏病。还期望这种分子可以导致有效的治疗剂。与哺乳动物病毒蛋白(PrP)相同,pPS10质粒复制蛋白(RepA)的N末端翼形螺旋(WH1)结构域在与不同的特定dsDNA序列结合后,在体外组装成各种淀粉样纳米结构。在这里,我们显示靛蓝染色的二(S2)和四磺酸(S4)衍生物停靠在RepA-WH1二聚体的DNA识别界面上。它们在RepA操纵子和质粒复制起点发现了RepA与其天然靶dsDNA重复序列的结合。量热法指出在RepA-WH1二聚体中存在一个具有微摩尔亲和力的主要位点,用于S4-靛蓝。如电子显微镜所揭示的,在存在诱导剂dsDNA的情况下,两个S2 / S4染色剂均抑制RepA-WH1组装成纤维。这些结果证实了DNA可以促进蛋白质组装成淀粉样蛋白的概念,并揭示了效应分子的结合位点可以靶向抑制淀粉样蛋白生成。

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