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20YJ

Hemoglobin amyloid fibril - PM2

Summary for 20YJ
Entry DOI10.2210/pdb20yj/pdb
EMDB information67393
DescriptorHemoglobin subunit beta (1 entity in total)
Functional Keywordsprotein fibril
Biological sourceBos taurus (domestic cattle)
Total number of polymer chains10
Total formula weight159773.82
Authors
Li, S.,Cao, Q.,Cao, Y. (deposition date: 2025-12-02, release date: 2026-07-22, Last modification date: 2026-07-29)
Primary citationLi, S.,Liu, X.,Li, S.,Yi, H.,Fang, Y.,Cao, Q.,Cao, Y.
Structural Basis of Hemoglobin Amyloid Fibrils Revealed by cryo-EM and Molecular Dynamics Simulations.
Nano Lett., 26:8867-8873, 2026
Cited by
PubMed Abstract: Hemoglobin has recently gained attention as a potential building block for amyloid-based biomaterials. However, the lack of atomic-level structural information has hindered its rational engineering. Here, we present atomic structures of hemoglobin amyloid fibrils determined by cryo-electron microscopy (cryo-EM). The structure of a new polymorph (PM2), together with the previously reported PM1, reveals that hemoglobin fibrillization is driven by the β-subunit. Using virtual fitting and molecular dynamics simulations, we demonstrate that the homologous α-subunit cannot adopt the amyloid fold due to steric clashes and electrostatic incompatibilities under acidic conditions (pH 2.0), particularly the introduction of positively charged histidine residues within the amyloid core. In contrast, the β-subunit forms stable fibrils, as its sequence enables favorable hydrophobic packing and electrostatic compatibility. Our findings thus provide the atomic-level explanation for subunit-specific amyloid formation in hemoglobin and establish a structural foundation for designing nanomaterials from this widely available agricultural byproduct.
PubMed: 42388124
DOI: 10.1021/acs.nanolett.6c02217
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.4 Å)
Structure validation

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