Institute of Biology III, University of Freiburg, 79104 Freiburg, Germany.
Hum Mol Genet. 2012 Aug 15;21(16):3587-603. doi: 10.1093/hmg/dds190. Epub 2012 May 18.
Increased Tau protein amyloidogenicity has been causatively implicated in several neurodegenerative diseases, collectively called tauopathies. In pathological conditions, Tau becomes hyperphosphorylated and forms intracellular aggregates. The deletion of K280, which is a mutation that commonly appears in patients with frontotemporal dementia with Parkinsonism linked to chromosome 17, enhances Tau aggregation propensity (pro-aggregation). In contrast, introduction of the I277P and I308P mutations prevents β-sheet formation and subsequent aggregation (anti-aggregation). In this study, we created a tauopathy model by expressing pro- or anti-aggregant Tau species in the nervous system of Caenorhabditis elegans. Animals expressing the highly amyloidogenic Tau species showed accelerated Tau aggregation and pathology manifested by severely impaired motility and evident neuronal dysfunction. In addition, we observed that the axonal transport of mitochondria was perturbed in these animals. Control animals expressing the anti-aggregant combination had rather mild phenotype. We subsequently tested several Tau aggregation inhibitor compounds and observed a mitigation of Tau proteotoxicity. In particular, a novel compound that crosses the blood-brain barrier of mammals proved effective in ameliorating the motility as well as delaying the accumulation of neuronal defects. Our study establishes a new C. elegans model of Tau aggregation-mediated toxicity and supports the emerging notion that inhibiting the nucleation of Tau aggregation can be neuroprotective.
在几种神经退行性疾病中,Tau 蛋白的淀粉样变性被认为是致病原因,这些疾病统称为 Tau 病。在病理条件下,Tau 蛋白过度磷酸化并形成细胞内聚集体。K280 的缺失是一种常见的突变,出现在与 17 号染色体相关的额颞叶痴呆伴帕金森病患者中,增强了 Tau 聚集倾向(促进聚集)。相比之下,引入 I277P 和 I308P 突变可防止β-折叠形成和随后的聚集(抗聚集)。在这项研究中,我们通过在秀丽隐杆线虫的神经系统中表达促聚集或抗聚集的 Tau 物种来创建 Tau 病模型。表达高淀粉样变性 Tau 物种的动物表现出加速的 Tau 聚集和病理学,表现为运动能力严重受损和明显的神经元功能障碍。此外,我们观察到这些动物中线粒体的轴突运输受到干扰。表达抗聚集组合的对照动物表现出相当温和的表型。随后,我们测试了几种 Tau 聚集抑制剂化合物,并观察到 Tau 蛋白毒性的减轻。特别是一种能够穿过哺乳动物血脑屏障的新型化合物,可有效改善运动能力并延迟神经元缺陷的积累。我们的研究建立了一种新的 Tau 聚集介导毒性的秀丽隐杆线虫模型,并支持了抑制 Tau 聚集核形成具有神经保护作用的新观点。