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Mechanistic basis for receptor-mediated pathological α-synuclein fibril cell-to-cell transmission in Parkinson's disease

Authors :
Chuchu Wang
Meng Rong Ma
Houfang Long
Youqi Tao
Xiaobo Mao
Shengnan Zhang
Chunyu Zhao
Cong Liu
Dan Li
Yeh Jun Lim
Zhijun Liu
Yan-Mei Li
Yu Qing Liu
Yasuyoshi Kimura
Guoqin Feng
Ted M. Dawson
Enquan Xu
Lin Jiang
Chunyu Jia
Valina L. Dawson
Zhenying Liu
Renxiao Wang
Jin Jian Hu
Source :
Proc Natl Acad Sci U S A
Publication Year :
2021

Abstract

The spread of pathological α-synuclein (α-syn) is a crucial event in the progression of Parkinson's disease (PD). Cell surface receptors such as lymphocyte activation gene 3 (LAG3) and amyloid precursor-like protein 1 (APLP1) can preferentially bind α-syn in the amyloid over monomeric state to initiate cell-to-cell transmission. However, the molecular mechanism underlying this selective binding is unknown. Here, we perform an array of biophysical experiments and reveal that LAG3 D1 and APLP1 E1 domains commonly use an alkaline surface to bind the acidic C terminus, especially residues 118 to 140, of α-syn. The formation of amyloid fibrils not only can disrupt the intramolecular interactions between the C terminus and the amyloid-forming core of α-syn but can also condense the C terminus on fibril surface, which remarkably increase the binding affinity of α-syn to the receptors. Based on this mechanism, we find that phosphorylation at serine 129 (pS129), a hallmark modification of pathological α-syn, can further enhance the interaction between α-syn fibrils and the receptors. This finding is further confirmed by the higher efficiency of pS129 fibrils in cellular internalization, seeding, and inducing PD-like α-syn pathology in transgenic mice. Our work illuminates the mechanistic understanding on the spread of pathological α-syn and provides structural information for therapeutic targeting on the interaction of α-syn fibrils and receptors as a potential treatment for PD.

Details

ISSN :
10916490
Volume :
118
Issue :
26
Database :
OpenAIRE
Journal :
Proceedings of the National Academy of Sciences of the United States of America
Accession number :
edsair.doi.dedup.....46975d21336776f6dcf368202d4145bc