Center for Neuropathology and Prion Research, Ludwig-Maximilians-Universität, Feodor-Lynen-Str, 23, 81377, Munich, Germany.
Mol Neurodegener. 2012 Jul 23;7:35. doi: 10.1186/1750-1326-7-35.
Fibrillar amyloid-like deposits and co-deposits of tau and α-synuclein are found in several common neurodegenerative diseases. Recent evidence indicates that small oligomers are the most relevant toxic aggregate species. While tau fibril formation is well-characterized, factors influencing tau oligomerization and molecular interactions of tau and α-synuclein are not well understood.
We used a novel approach applying confocal single-particle fluorescence to investigate the influence of tau phosphorylation and metal ions on tau oligomer formation and its coaggregation with α-synuclein at the level of individual oligomers. We show that Al3+ at physiologically relevant concentrations and tau phosphorylation by GSK-3β exert synergistic effects on the formation of a distinct SDS-resistant tau oligomer species even at nanomolar protein concentration. Moreover, tau phosphorylation and Al3+ as well as Fe3+ enhanced both formation of mixed oligomers and recruitment of α-synuclein in pre-formed tau oligomers.
Our findings provide a new perspective on interactions of tau phosphorylation, metal ions, and the formation of potentially toxic oligomer species, and elucidate molecular crosstalks between different aggregation pathways involved in neurodegeneration.
纤维状淀粉样样沉积物和 Tau 及 α-突触核蛋白的共沉积存在于几种常见的神经退行性疾病中。最近的证据表明,小的寡聚物是最相关的毒性聚集物。虽然 Tau 原纤维的形成已经得到很好的描述,但影响 Tau 寡聚化以及 Tau 和 α-突触核蛋白分子相互作用的因素还不太清楚。
我们采用了一种新的方法,应用共焦单粒子荧光来研究 Tau 磷酸化和金属离子对 Tau 寡聚体形成及其与 α-突触核蛋白共聚集的影响,达到单个寡聚体的水平。我们发现,生理相关浓度的 Al3+和 GSK-3β 磷酸化 Tau 对 SDS 抗性 Tau 寡聚物的形成具有协同作用,即使在纳摩尔蛋白浓度下也是如此。此外,Tau 磷酸化、Al3+和 Fe3+均增强了混合寡聚物的形成,并募集了预先形成的 Tau 寡聚物中的 α-突触核蛋白。
我们的发现为 Tau 磷酸化、金属离子以及潜在毒性寡聚物形成的相互作用提供了新的视角,并阐明了神经退行性变过程中不同聚集途径之间的分子串扰。