Chang Xinmin, Tse Amanda M, Fayzullina Marina, Albanese Angela, Kim Minchan, Wang Conner F, Zheng Zipeng, Joshi Ruchira V, Williams Christopher K, Magaki Shino D, Vinters Harry V, Jones Jeremy O, Haworth Ian S, Seidler Paul M
Department of Pharmacology and Pharmaceutical Sciences, USC Mann School of Pharmacy and Pharmaceutical Sciences, University of Southern California, Los Angeles, CA 90089, USA.
Department of Medical Biophysics, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.
Sci Adv. 2025 Jan 31;11(5):eadr8055. doi: 10.1126/sciadv.adr8055.
Neurotransmitters (NTs) mediate trans-synaptic signaling, and disturbances in their levels are linked to aging and brain disorders. Here, we ascribe an additional function for NTs in mediating intracellular protein aggregation by interaction with cytosolic protein fibrils. Cell-based seeding experiments revealed monoaminergic NTs as inhibitors of tau. Seeding is a disease-relevant mechanism involving catalysis by fibrils, leading to the aggregation of proteins in Alzheimer's disease and other neurodegenerative diseases. Chemotyping small molecules with varied backbone structures revealed determinants of aggregation inhibitors and catalysts. Among those identified were monoaminergic NTs. Dose titrations revealed bimodal effects indicative of fibril disaggregation, with aggregation catalysis occurring at low ratios of NTs and inhibited seeding ensuing at higher concentrations. Bimodal effects by NTs extend from in vitro systems to dopaminergic neurons, suggesting that pharmacotherapies that modify intracellular NT levels could shape the neuronal protein aggregation environment.
神经递质(NTs)介导跨突触信号传导,其水平的紊乱与衰老和脑部疾病相关。在此,我们赋予NTs通过与胞质蛋白原纤维相互作用介导细胞内蛋白质聚集的额外功能。基于细胞的接种实验表明单胺能NTs是tau蛋白聚集的抑制剂。接种是一种与疾病相关的机制,涉及原纤维催化,导致阿尔茨海默病和其他神经退行性疾病中的蛋白质聚集。对具有不同主链结构的小分子进行化学分型揭示了聚集抑制剂和催化剂的决定因素。其中鉴定出的有单胺能NTs。剂量滴定显示出表明原纤维解聚的双峰效应,NTs低比例时发生聚集催化,较高浓度时随后接种受到抑制。NTs的双峰效应从体外系统扩展到多巴胺能神经元,表明改变细胞内NTs水平的药物治疗可能塑造神经元蛋白质聚集环境。