Different structures and pathologies of alpha-synuclein fibrils derived from preclinical and postmortem patients of Parkinson's disease
Fan, Y.; Sun, Y.; Yu, W.; Tao, Y.; Xia, W.; Liu, Y.; Tang, Y.; Sun, Y.; Liu, F.; Cao, Q.; Wu, J.; Liu, C.; Wang, J.; Li, D.
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-Synuclein (-syn) fibrillar aggregates are the major component of Lewy bodies and Lewy neurites presenting as the pathology hallmark of Parkinsons disease (PD). Studies have shown that -syn is potential to form different conformational fibrils associated with different synucleinopathies, but whether the conformation of -syn fibrils changes in different phases of related diseases is to be explored. Here, we amplified -syn aggregates from the cerebrospinal fluid (CSF) of preclinical (pre-PD) and late-stage postmortem PD (post-PD) patients. Our results show that compared to the CSF of pre-PD, that of post-PD is markedly stronger in seeding in vitro -syn aggregation, and the amplified fibrils are more potent in inducing endogenous -syn aggregation in neurons. Cryo-electron microscopic structures further reveal that the difference between the pre-PD- and post-PD-derived fibrils lies on a minor polymorph which in the pre-PD fibrils is morphologically straight, while in the post-PD fibrils represents a single protofilament assembled by a distinctive conformation of -syn. Our work demonstrates structural and pathological differences between pre-PD and post-PD -syn aggregation and suggests potential alteration of -syn fibrils during the progression of PD clinical phases. Significance StatementIncreasing evidence support different conformational -syn fibrils in patients with different -synucleinopathies, but whether the conformation of -syn fibrils changes in different phases of related diseases is unknown. Here, we show that -syn fibrils amplified from the cerebrospinal fluid (CSF) of the late-stage postmortem PD (post-PD) patient are more potent in inducing endogenous -syn aggregation in neurons than that amplified from the preclinical (pre-PD) patient. Cryo-EM structures further reveal that the post-PD fibrils contain a novel conformation that is distinct from either the pre-PD fibrils or those previously reported. Our work suggests conformational evolution of -syn fibrils along with PD progression.
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