Amyloid formation via supramolecular peptide assemblies

被引:29
作者
Moore, Roger A.
Hayes, Stanley F.
Fischer, Elizabeth R.
Priola, Suzette A.
机构
[1] NIAID, Lab Persistent Viral Dis, Rocky Mt Labs, NIH, Hamilton, MT 59840 USA
[2] NIAID, Microscopy Unit, Res Technol Sect, RTB,Rocky Mt Labs,NIH, Hamilton, MT 59840 USA
关键词
ATOMIC-FORCE MICROSCOPY; IN-VITRO; ALZHEIMERS-DISEASE; FIBRIL FORMATION; PROTEIN; OLIGOMERS; FIBRILLOGENESIS; MECHANISM; AGGREGATION; PHENOTYPE;
D O I
10.1021/bi700247y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Amyloid fibrils have been classically defined as linear, nonbranched polymeric proteins with a cross beta-sheet structure and the ability to alter the optical properties of the amyloid-specific dye Congo Red. Mounting evidence suggests that soluble oligomeric peptide assemblies similar to 2-20 nm in diameter are critical intermediates in amyloid formation. Using a pathogenic prion protein peptide comprised of residues 23-144, we demonstrate that, under quiescent but not agitated conditions, much larger globular assemblies up to 1 mu m in diameter are made. These globules precede fibril formation and directly interact with growing fibril bundles. Fibrils made via these large spherical peptide assemblies displayed a remarkable diversity of ultrastructural features. Fibrillization of the A beta 1-40 peptide under similar conditions yielded similar results, suggesting a mechanism of general amyloid formation that can proceed through intermediates much larger than those previously described. Our data suggest that simply changing the physical microenvironment can profoundly influence the mechanism of amyloid formation and yield fibrils with novel ultrastructural properties.
引用
收藏
页码:7079 / 7087
页数:9
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