生物
淀粉样蛋白(真菌学)
细胞生物学
TLR2型
秀丽隐杆线虫
细菌
星形胶质增生
先天免疫系统
α-突触核蛋白
蛋白质聚集
炎症
免疫系统
微生物学
免疫学
生物化学
中枢神经系统
神经科学
医学
内科学
基因
疾病
帕金森病
植物
遗传学
作者
Shu G. Chen,Vilius Stribinskis,Madhavi J. Rane,Donald R. Demuth,Evelyne Gozal,Andrew M. Roberts,Rekha Jagadapillai,Ruolan Liu,Kyonghwan Choe,Bhooma Shivakumar,Francheska Son,Shunying Jin,Richard A. Kerber,Anthony Adame,Eliezer Masliah,Robert P. Friedland
摘要
Abstract Misfolded alpha-synuclein (AS) and other neurodegenerative disorder proteins display prion-like transmission of protein aggregation. Factors responsible for the initiation of AS aggregation are unknown. To evaluate the role of amyloid proteins made by the microbiota we exposed aged rats and transgenic C . elegans to E . coli producing the extracellular bacterial amyloid protein curli. Rats exposed to curli-producing bacteria displayed increased neuronal AS deposition in both gut and brain and enhanced microgliosis and astrogliosis compared to rats exposed to either mutant bacteria unable to synthesize curli, or to vehicle alone. Animals exposed to curli producing bacteria also had more expression of TLR2, IL-6 and TNF in the brain than the other two groups. There were no differences among the rat groups in survival, body weight, inflammation in the mouth, retina, kidneys or gut epithelia, and circulating cytokine levels. AS-expressing C . elegans fed on curli-producing bacteria also had enhanced AS aggregation. These results suggest that bacterial amyloid functions as a trigger to initiate AS aggregation through cross-seeding and also primes responses of the innate immune system.
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