共核细胞病
体内
诱导多能干细胞
化学
体外
细胞生物学
福尔达默
HEK 293细胞
路易氏体型失智症
蛋白质聚集
表型
纤维发生
药物发现
路易体
细胞
生物
生物化学
细胞培养
突变体
药理学
阿尔茨海默病
微泡
血脑屏障
硫黄素
萎缩
帕金森病
分子生物学
癌症研究
体外毒理学
淀粉样蛋白(真菌学)
程序性细胞死亡
荧光素酶
α-突触核蛋白
细胞外
细胞病理学
作者
Ryan A. Dohoney,L. Palanikumar,Emily G. Oldani,Charles Zuwu Baysah,Johnson A. Joseph,David Polanco,Paula Santos-Otte,Nicholas H. Stillman,Peter Corcoran,Tyler D. Ball,Tessa C. Fitch,Jemil Ahmed,Ifunayachi Ogbonna-Ukuku,Kevin M Reynolds Caicedo,Ying Liu,Maureen A. Leehey,Daniel A. Linseman,Daniel Paredes,Melissa Birol,Nunilo Cremades
标识
DOI:10.1126/scitranslmed.adu1050
摘要
Synucleinopathies is an umbrella term for multiple neurological disorders, including Parkinson’s disease (PD), Lewy body dementia (LBD), and multiple system atrophy (MSA). A central pathological hallmark of synucleinopathies is the aggregation of α-synuclein (αS, a neuronal protein) and its prion-like spread. Therefore, inhibition of αS aggregation and spread is considered a viable therapeutic approach for the treatment of synucleinopathies. Foldamers are synthetic ligands that mimic the secondary structure of proteins. Using an oligoquinoline (OQ) scaffold–based foldamer approach, we have previously identified a foldamer (SK-129) that potently inhibits αS aggregation. Here, using a wide range of biophysical, cellular, and in vivo methods, we showed that SK-129 rescued synucleinopathy phenotypes in cellular, Caenorhabditis elegans , and human induced pluripotent stem cell (iPSC)–derived neuron models. SK-129 specifically bound to neurotoxic αS oligomers with ~6-fold higher affinity ( K d = 221 ± 29 nM) than to physiological αS monomer, validating αS oligomers as a therapeutic target. Furthermore, SK-129 efficiently crossed the blood-brain barrier (BBB) and exhibited favorable pharmaceutical properties in mice. Treatment with SK-129 prevented brain histopathology and increased survival in a mouse model expressing human A53T mutant αS without showing any apparent cytotoxicity. SK-129 inhibited αS aggregation mediated by exosomes derived from C. elegans or patients with PD in HEK293T reporter cells. SK-129 completely inhibited the coaggregation of αS-tau, a pathological biomarker for LBD in both cellular and mouse models. Overall, we report a potent foldamer with therapeutic potential for PD and LBD.
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