Siano Giacomo, Micaelli Mariachiara, Scarlatti Arianna, Quercioli Valentina, Di Primio Cristina, Cattaneo Antonino
Laboratorio di Biologia BIO@SNS, Scuola Normale Superiore, Pisa, Italy.
Istituto di Neuroscienze, CNR, Pisa, Italy.
Front Mol Neurosci. 2020 Dec 2;13:569395. doi: 10.3389/fnmol.2020.569395. eCollection 2020.
Tauopathies are neurodegenerative disorders characterized by Tau aggregation. Genetic studies on familial cases allowed for the discovery of mutations in the MAPT gene that increase Tau propensity to detach from microtubules and to form insoluble cytoplasmic Tau aggregates. Recently, the rare mutation Q336H has been identified to be associated with Pick's disease (PiD) and biochemical analyses demonstrated its ability to increase the microtubules (MTs) polymerization, thus revealing an opposite character compared to other Tau mutations studied so far. Here we investigated the biophysical and molecular properties of Tau in living cells by the employment of the conformational Tau biosensor CST. We found that this mutation alters Tau conformation on microtubules, stabilizes its binding to tubulin, and is associated with a paradoxical lower level of Tau phosphorylation. Moreover, we found that this mutation impacts the cytoskeletal complexity by increasing the tubulin filament length and the number of branches. However, despite these apparently non-pathological traits, we observed the formation of intracellular inclusions confirming that Q336H leads to aggregation. Our results suggest that the Tau aggregation process might be triggered by molecular mechanisms other than Tau destabilization or post-translational modifications which are likely to be detrimental to neuronal function .
tau蛋白病是一类以tau蛋白聚集为特征的神经退行性疾病。对家族性病例的遗传学研究发现了微管相关蛋白tau(MAPT)基因中的突变,这些突变增加了tau蛋白从微管上脱离并形成不溶性细胞质tau蛋白聚集体的倾向。最近,已鉴定出罕见突变Q336H与皮克病(PiD)相关,生化分析表明其具有增加微管(MTs)聚合的能力,因此与迄今为止研究的其他tau蛋白突变相比具有相反的特性。在这里,我们通过使用构象性tau蛋白生物传感器CST研究了活细胞中tau蛋白的生物物理和分子特性。我们发现这种突变改变了tau蛋白在微管上的构象,稳定了其与微管蛋白的结合,并与矛盾的较低水平的tau蛋白磷酸化有关。此外,我们发现这种突变通过增加微管蛋白丝的长度和分支数量来影响细胞骨架的复杂性。然而,尽管有这些明显的非病理性特征,我们观察到细胞内包涵体的形成,证实Q336H导致聚集。我们的结果表明,tau蛋白聚集过程可能由tau蛋白不稳定或翻译后修饰以外的分子机制触发,而这些机制可能对神经元功能有害。