Majumdar Anupa, Dogra Priyanka, Maity Shiny, Mukhopadhyay Samrat
J Phys Chem Lett. 2019 Jul 18;10(14):3929-3936. doi: 10.1021/acs.jpclett.9b01731. Epub 2019 Jul 1.
Liquid-liquid phase separation occurs via a multitude of transient, noncovalent, and intermolecular interactions resulting in phase transition of intrinsically disordered proteins/regions (IDPs/IDRs) and other biopolymers into mesoscopic, dynamic, nonstoichiometric, and supramolecular condensates. Here we present a unique case to demonstrate that unusual conformational expansion events coupled with solvation and fluctuations drive phase separation of tau, an IDP associated with Alzheimer's disease. Using intramolecular excimer emission as a powerful proximity readout, we show the unraveling of polypeptide chains within the protein-rich interior environment that can promote critical interchain contacts. Using highly sensitive picosecond time-resolved fluorescence depolarization measurements, we directly capture rapid large-amplitude torsional fluctuations in the extended chains that can control the relay of making-and-breaking of noncovalent intermolecular contacts maintaining the internal fluidity. The interplay of these key molecular parameters can be of prime importance in modulating the mesoscale material property of liquid-like condensates and their maturation into pathological gel-like and solid-like aggregates.
液-液相分离通过多种瞬时、非共价和分子间相互作用发生,导致内在无序蛋白质/区域(IDP/IDR)和其他生物聚合物相转变为介观、动态、非化学计量和超分子凝聚物。在此,我们展示了一个独特案例,以证明异常的构象扩展事件与溶剂化和波动相结合,驱动了与阿尔茨海默病相关的IDP——tau蛋白的相分离。利用分子内激基复合物发射作为强大的邻近读出方法,我们展示了富含蛋白质的内部环境中多肽链的解开,这可以促进关键的链间接触。通过高度灵敏的皮秒时间分辨荧光去极化测量,我们直接捕捉到了伸展链中快速的大幅度扭转波动,这些波动可以控制维持内部流动性的非共价分子间接触的形成和断裂的接力。这些关键分子参数的相互作用对于调节类液体凝聚物的介观材料特性及其成熟为病理性凝胶状和固体状聚集体可能至关重要。