Biosystems & Integrative Sciences Institute, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal.
Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal.
Nat Commun. 2021 Nov 1;12(1):6292. doi: 10.1038/s41467-021-26584-2.
The microtubule-associated protein tau is implicated in the formation of oligomers and fibrillar aggregates that evade proteostasis control and spread from cell-to-cell. Tau pathology is accompanied by sustained neuroinflammation and, while the release of alarmin mediators aggravates disease at late stages, early inflammatory responses encompass protective functions. This is the case of the Ca-binding S100B protein, an astrocytic alarmin which is augmented in AD and which has been recently implicated as a proteostasis regulator, acting over amyloid β aggregation. Here we report the activity of S100B as a suppressor of tau aggregation and seeding, operating at sub-stoichiometric conditions. We show that S100B interacts with tau in living cells even in microtubule-destabilizing conditions. Structural analysis revealed that tau undergoes dynamic interactions with S100B, in a Ca-dependent manner, notably with the aggregation prone repeat segments at the microtubule binding regions. This interaction involves contacts of tau with a cleft formed at the interface of the S100B dimer. Kinetic and mechanistic analysis revealed that S100B inhibits the aggregation of both full-length tau and of the microtubule binding domain, and that this proceeds through effects over primary and secondary nucleation, as confirmed by seeding assays and direct observation of S100B binding to tau oligomers and fibrils. In agreement with a role as an extracellular chaperone and its accumulation near tau positive inclusions, we show that S100B blocks proteopathic tau seeding. Together, our findings establish tau as a client of the S100B chaperone, providing evidence for neuro-protective functions of this inflammatory mediator across different tauopathies.
微管相关蛋白 tau 参与寡聚体和纤维状聚集体的形成,这些聚集体逃避了蛋白质平衡控制,并在细胞间传播。tau 病理学伴随着持续的神经炎症,虽然警报素介质的释放在疾病晚期加重病情,但早期炎症反应包含保护功能。这种情况发生在钙结合 S100B 蛋白上,S100B 蛋白是一种星形胶质细胞警报素,在 AD 中增加,最近被牵连为一种蛋白质平衡调节剂,作用于淀粉样β聚合。在这里,我们报告 S100B 的活性作为 tau 聚集和播种的抑制剂,在亚化学计量条件下发挥作用。我们表明,S100B 在活细胞中与 tau 相互作用,即使在微管不稳定的条件下也是如此。结构分析表明,tau 以 Ca 依赖性的方式与 S100B 发生动态相互作用,特别是与微管结合区域的聚集倾向重复片段。这种相互作用涉及 tau 与 S100B 二聚体界面形成的裂缝的接触。动力学和机制分析表明,S100B 抑制全长 tau 和微管结合域的聚集,这是通过对初级和次级成核的影响来实现的,这通过接种测定和直接观察 S100B 与 tau 寡聚体和纤维的结合得到证实。与作为细胞外伴侣的作用及其在 tau 阳性包涵体附近的积累一致,我们表明 S100B 阻止了蛋白病 tau 的播种。总之,我们的发现确立了 tau 作为 S100B 伴侣的客户,为这种炎症介质在不同 tau 病中的神经保护功能提供了证据。