9JHG image
Deposition Date 2024-09-09
Release Date 2025-09-03
Last Version Date 2025-09-03
Entry Detail
PDB ID:
9JHG
Keywords:
Title:
Cryo-em structure of beta-LG fibril
Biological Source:
Source Organism:
Bos taurus (Taxon ID: 9913)
Method Details:
Experimental Method:
Resolution:
3.38 Å
Aggregation State:
FILAMENT
Reconstruction Method:
HELICAL
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Beta-lactoglobulin fibrils
Gene (Uniprot):LGB
Chain IDs:A, B, C, D (auth: E), E (auth: D), F
Chain Length:32
Number of Molecules:6
Biological Source:Bos taurus
Ligand Molecules
Primary Citation
beta-Lactoglobulin Forms a Conserved Fibril Core That Assembles into Diverse Fibril Polymorphs.
Nano Lett. 25 3653 3661 (2025)
PMID: 39992798 DOI: 10.1021/acs.nanolett.5c00137

Abstact

The β-lactoglobulin (β-LG) protein, sourced from dietary products, is notable for forming amyloid fibrils, which are increasingly recognized as valuable protein-based nanomaterials due to their superior cytocompatibility, chemical resilience, and mechanical characteristics. However, the precise atomic details of β-LG's fibril assembly are not understood. In this study, we utilized cryo-electron microscopy to elucidate the composition and architecture of β-LG fibrils. We discovered that the β-LG fibril was rapidly assembled after a short time incubation. Remarkably, these fibril cores were composed of the first 32 residues, forming four β-strands that adopted a serpentine arrangement into a single protofilament. This protofilament core's stability was reinforced by hydrophobic interactions. Two identical protofilaments then align to form four distinct structural polymorphs through unique interfacial configurations, which were stabilized by hydrophilic interactions, hydrogen bonding, and electrostatic forces. Our findings provide a structural framework for understanding β-LG fibril formation and pave the way for designing innovative β-LG-based nanomaterials.

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