Institute for Biochemistry and Molecular Biology, Laboratory for Structural Biology of Infection and Inflammation, University of Hamburg, c/o DESY, 22603, Hamburg, Germany.
The Hamburg Centre for Ultrafast Imaging (CUI), University of Hamburg, 2276, Hamburg, Germany.
Sci Rep. 2023 Mar 9;13(1):3963. doi: 10.1038/s41598-023-29846-9.
Tau is an intrinsically disordered neuronal protein in the central nervous system. Aggregated Tau is the main component of neurofibrillary tangles observed in Alzheimer's disease. In vitro, Tau aggregation can be triggered by polyanionic co-factors, like RNA or heparin. At different concentration ratios, the same polyanions can induce Tau condensates via liquid-liquid phase separation (LLPS), which over time develop pathological aggregation seeding potential. Data obtained by time resolved Dynamic Light Scattering experiments (trDLS), light and electron microscopy show that intermolecular electrostatic interactions between Tau and the negatively charged drug suramin induce Tau condensation and compete with the interactions driving and stabilizing the formation of Tau:heparin and Tau:RNA coacervates, thus, reducing their potential to induce cellular Tau aggregation. Tau:suramin condensates do not seed Tau aggregation in a HEK cell model for Tau aggregation, even after extended incubation. These observations indicate that electrostatically driven Tau condensation can occur without pathological aggregation when initiated by small anionic molecules. Our results provide a novel avenue for therapeutic intervention of aberrant Tau phase separation, utilizing small anionic compounds.
Tau 是中枢神经系统中一种无序的神经元蛋白。聚集的 Tau 是阿尔茨海默病中观察到的神经原纤维缠结的主要成分。在体外,Tau 聚集可以被多阴离子共因子(如 RNA 或肝素)触发。在不同的浓度比下,相同的多阴离子可以通过液-液相分离(LLPS)诱导 Tau 凝聚物,随着时间的推移,这些凝聚物会发展出病理性聚集的种子潜力。通过时间分辨动态光散射实验(trDLS)、光和电子显微镜获得的数据表明,Tau 与带负电荷的药物苏拉明之间的分子间静电相互作用诱导 Tau 凝聚,并与驱动和稳定 Tau:肝素和 Tau:RNA 凝聚物形成的相互作用竞争,从而降低它们诱导细胞 Tau 聚集的潜力。Tau:苏拉明凝聚物在用于 Tau 聚集的 HEK 细胞模型中不会引发 Tau 聚集,即使在延长孵育后也是如此。这些观察结果表明,当由小阴离子分子引发时,静电驱动的 Tau 凝聚可以在没有病理性聚集的情况下发生。我们的研究结果为利用小阴离子化合物对异常 Tau 相分离进行治疗干预提供了新的途径。