Physicochemical mechanisms of aggregation and fibril formation of α-synuclein and apolipoprotein A-I

被引:0
|
作者
Ohgita, Takashi [1 ,2 ]
Kono, Hiroki [1 ]
Namba, Norihiro [1 ]
Saito, Hiroyuki [1 ,3 ]
机构
[1] Kyoto Pharmaceut Univ, Dept Biophys Chem, Kyoto 6078414, Japan
[2] Kyoto Pharmaceut Univ, Ctr Instrumental Anal, Kyoto, Japan
[3] Kyoto Pharmaceut Univ, Yamashina Ku, Kyoto 6078414, Japan
关键词
amyloid; Parkinson's disease; systemic amyloidosis; Finke-Watzky two-step model; AMYLOID FORMATION; PROTEIN; NUCLEATION; OLIGOMERS; DISEASE;
D O I
10.2142/biophysico.bppb-v21.0005
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Deposition and accumulation of amyloid fibrils is a hallmark of a group of diseases called amyloidosis and neurodegenerative disorders. Although polypeptides potentially have a fibril-forming propensity, native proteins have evolved into proper functional conformations to avoid aggregation and fibril formation. Understanding the mechanism for regulation of fibril formation of native proteins provides clues for the rational design of molecules for inhibiting fibril formation. Although fibril formation is a complex multistep reaction, experimentally obtained fibril formation curves can be fitted with the Finke-Watzky (F-W) two-step model for homogeneous nucleation followed by autocatalytic fibril growth. The resultant F-W rate constants for nucleation and fibril formation provide information on the chemical kinetics of fibril formation. Using the F-W two-step model analysis, we investigated the physicochemical mechanisms of fibril formation of a Parkinson's disease protein alpha-synuclein (alpha S) and a systemic amyloidosis protein apolipoprotein A-I (apoA-I). The results indicate that the C-terminal region of alpha S enthalpically and entropically suppresses nucleation through the intramolecular interaction with the N-terminal region and the intermolecular interaction with existing fibrils. In contrast, the nucleation of the N-terminal fragment of apoA-I is entropically driven likely due to dehydration of large hydrophobic segments in the molecule. Based on our recent findings, we discuss the similarity and difference of the fibril formation mechanisms of alpha S and the N-terminal fragment of apoA-I from the physicochemical viewpoints.
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页数:12
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