ORCID: https://orcid.org/0000-0002-1056-3849; Carvajal, Alonso I.; Mi, Chenchen; Paatz, Sarah; Hartl, F. Ulrich
ORCID: https://orcid.org/0000-0002-7941-135X und Bracher, Andreas
ORCID: https://orcid.org/0000-0001-8530-7594
(2025):
Structural analyses define the molecular basis of clusterin chaperone function.
In: Nature Structural & Molecular Biology, Bd. 32: S. 2035-2045
[PDF, 10MB]
Abstract
Clusterin (apolipoprotein J), a conserved glycoprotein abundant in blood and cerebrospinal fluid, functions as a molecular chaperone and apolipoprotein. Dysregulation of clusterin is linked to late-onset Alzheimer disease. Despite its prominent role in extracellular proteostasis, the mechanism of clusterin function remained unclear. Here, we present crystal structures of human clusterin, revealing a discontinuous three-domain architecture. Structure-based mutational analysis demonstrated that two disordered, hydrophobic peptide tails enable diverse activities. Resembling the substrate-binding regions of small heat-shock proteins, these sequences mediate clusterin’s chaperone function in suppressing amyloid-β, tau and α-synuclein aggregation. In conjunction with conserved surface areas, the tail segments also participate in clusterin binding to cell surface receptors and cellular uptake. While contributing to lipoprotein formation, the hydrophobic tails remain accessible for chaperone function in the lipoprotein complex. The remarkable versatility of these sequences allows clusterin to function alone or bound to lipids in maintaining the solubility of aberrant extracellular proteins and facilitating their clearance by endocytosis and lysosomal degradation.
| Dokumententyp: | Zeitschriftenartikel |
|---|---|
| Fakultät: | Medizin > Munich Cluster for Systems Neurology (SyNergy) |
| Themengebiete: | 600 Technik, Medizin, angewandte Wissenschaften > 610 Medizin und Gesundheit |
| URN: | urn:nbn:de:bvb:19-epub-129868-9 |
| ISSN: | 1545-9993 |
| Sprache: | Englisch |
| Dokumenten ID: | 129868 |
| Datum der Veröffentlichung auf Open Access LMU: | 28. Nov. 2025 08:10 |
| Letzte Änderungen: | 28. Nov. 2025 08:10 |
| DFG: | Gefördert durch die Deutsche Forschungsgemeinschaft (DFG) - 390857198 |
