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9JSV

G175S mutant native PMEL amyloid

Summary for 9JSV
Entry DOI10.2210/pdb9jsv/pdb
Related9JST 9JSU
EMDB information61782 61783 61784
DescriptorM-alpha (1 entity in total)
Functional Keywordsmelanosome, melanoma, pigment, melanin, amyloid, glaucoma, structural protein
Biological sourceHomo sapiens (human)
Total number of polymer chains8
Total formula weight30290.74
Authors
Oda, T.,Yanagisawa, H. (deposition date: 2024-10-01, release date: 2024-10-09, Last modification date: 2025-07-16)
Primary citationYanagisawa, H.,Arai, H.,Wang, T.,Miyazawa, H.,Kikkawa, M.,Oda, T.
Cryo-EM of wild-type and mutant PMEL amyloid cores reveals structural mechanism of pigment dispersion syndrome.
Nat Commun, 16:5411-5411, 2025
Cited by
PubMed Abstract: PMEL amyloids serve as essential scaffolds for melanin deposition in melanosomes, playing a crucial role in pigmentation. Despite their importance, the high-resolution structure of PMEL amyloids has remained unresolved. Using cryo-electron microscopy, we determine near-atomic resolution structures of wild-type PMEL amyloid core, revealing two distinct polymorphic forms with structural features. We further investigate the pathogenic G175S mutation associated with pigment dispersion syndrome (PDS). Structural analysis reveales that G175S introduces an additional hydrogen bond, stabilizing an alternative fibril conformation. In vitro, the G175S mutant exhibits a fourfold increase in polymerization efficiency compared to the wild type. In cells, G175S expression resultes in a twofold increase in intracellular amyloid content and a ~70% increase in extracellular amyloids, without altering melanosome morphology or number. These results indicate that the G175S mutation enhances amyloidogenesis within melanosomes, elevating amyloid load and potentially contributing to PDS pathophysiology. This study provides molecular insights into PMEL amyloid formation, highlighting its structural diversity and dysregulation in pigmentation disorders.
PubMed: 40595665
DOI: 10.1038/s41467-025-61233-y
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (1.79 Å)
Structure validation

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