αB-crystallin, a small heat-shock protein, prevents the amyloid fibril growth of an amyloid β-peptide and β2-microglobulin

Author:

Raman Bakthisaran12,Ban Tadato2,Sakai Miyo2,Pasta Saloni Y.1,Ramakrishna Tangirala1,Naiki Hironobu3,Goto Yuji3,Rao Ch. Mohan1

Affiliation:

1. Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500 007, India

2. Institute for Protein Research, Osaka University, and CREST, Japan Science and Technology Agency, Yamadaoka 3-2, Suita, Osaka 565–0871, Japan

3. Faculty of Medical Science, University of Fukui, and CREST, Japan Science and Technology Agency, Matsuoka, Fukui 910-1193, Japan

Abstract

αB-crystallin, a small heat-shock protein, exhibits molecular chaperone activity. We have studied the effect of αB-crystallin on the fibril growth of the Aβ (amyloid β)-peptides Aβ-(1–40) and Aβ-(1–42). αB-crystallin, but not BSA or hen egg-white lysozyme, prevented the fibril growth of Aβ-(1–40), as revealed by thioflavin T binding, total internal reflection fluorescence microscopy and CD spectroscopy. Comparison of the activity of some mutants and chimaeric α-crystallins in preventing Aβ-(1–40) fibril growth with their previously reported chaperone ability in preventing dithiothreitol-induced aggregation of insulin suggests that there might be both common and distinct sites of interaction on α-crystallin involved in the prevention of amorphous aggregation of insulin and fibril growth of Aβ-(1–40). αB-crystallin also prevents the spontaneous fibril formation (without externally added seeds) of Aβ-(1–42), as well as the fibril growth of Aβ-(1–40) when seeded with the Aβ-(1–42) fibril seed. Sedimentation velocity measurements show that αB-crystallin does not form a stable complex with Aβ-(1–40). The mechanism by which it prevents the fibril growth differs from the known mechanism by which it prevents the amorphous aggregation of proteins. αB-crystallin binds to the amyloid fibrils of Aβ-(1–40), indicating that the preferential interaction of the chaperone with the fibril nucleus, which inhibits nucleation-dependent polymerization of amyloid fibrils, is the mechanism that is predominantly involved. We found that αB-crystallin prevents the fibril growth of β2-microglobulin under acidic conditions. It also retards the depolymerization of β2-microglobulin fibrils, indicating that it can interact with the fibrils. Our study sheds light on the role of small heat-shock proteins in protein conformational diseases, particularly in Alzheimer's disease.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference48 articles.

1. Hypertonic stress induces alpha B-crystallin expression;Dasgupta;Exp. Eye Res.,1992

2. Small heat-shock proteins and their potential role in human disease;Clark;Curr. Opin. Struct. Biol.,2000

3. Expression of the alpha-crystallin/small heat-shock protein/molecular chaperone genes in the lens and other tissues;Sax;Adv. Enzymol. Relat. Areas Mol. Biol.,1994

4. Alpha B subunit of lens-specific protein alpha-crystallin is present in other ocular and non-ocular tissues;Bhat;Biochem. Biophys. Res. Commun.,1989

5. A dynamic quaternary structure of bovine alpha-crystallin as indicated from intermolecular exchange of subunits;van den Oetelaar;Biochemistry,1990

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