Hierarchical protofilament intertwining rules the formation of mixed-curvature amyloid polymorphs

TitleHierarchical protofilament intertwining rules the formation of mixed-curvature amyloid polymorphs
Publication TypeJournal Article
Year of Publication2024
AuthorsZhou J., Assenza S., Tatli M., Tian J., Ilie I.M, Starostin E., Caflisch A., Knowles T., Dietler G., Ruggeri F., Stahlberg H., Sekatskii S., Mezzenga R.
JournalAdvanced Science
Volume11
Paginatione2402740
Date Published2024 Jun 20
Type of ArticleResearch Article
Abstract

Amyloid polymorphism is a hallmark of almost all amyloid species, yet the mechanisms underlying the formation of amyloid polymorphs and their complex architectures remain elusive. Commonly, two main mesoscopic topologies are found in amyloid polymorphs characterized by non-zero Gaussian and mean curvatures: twisted ribbons and helical fibrils, respectively. Here, a rich heterogeneity of configurations is demonstrated on insulin amyloid fibrils, where protofilament packing can occur, besides the common polymorphs, also in a combined mode forming mixed-curvature polymorphs. Through AFM statistical analysis, an extended array of heterogeneous architectures that are rationalized by mesoscopic theoretical arguments are identified. Notably, an unusual fibrillization pathway is also unraveled toward mixed-curvature polymorphs via the widespread recruitment and intertwining of protofilaments and protofibrils. The results present an original view of amyloid polymorphism and advance the fundamental understanding of the fibrillization mechanism from single protofilaments into mature amyloid fibrils.

DOI10.1002/advs.202402740
pubindex

0300

Alternate JournalAdv. Sci.
PubMed ID38899849
Highlight Role: 
Aggregation and Assembly