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9SQR

Symmetry relaxed reconstruction of Rhodospirillum rubrum encapsulin:encapsulated ferritin nanocompartment

This is a non-PDB format compatible entry.
Summary for 9SQR
Entry DOI10.2210/pdb9sqr/pdb
EMDB information54434 55116
DescriptorType 1 encapsulin shell protein, Encapsulated ferritin-like protein (2 entities in total)
Functional Keywordsencapsulin, nanocompartment, encapsulated ferritin, structural protein, oxidoreductase
Biological sourceRhodospirillum rubrum
More
Total number of polymer chains80
Total formula weight2090190.56
Authors
McIver, Z.,McCorvie, T.J.,Basle, A.,Marles-Wright, J. (deposition date: 2025-09-23, release date: 2026-09-02)
Primary citationMcIver, Z.,He, D.,Ross, J.,Cozzaglio, M.,Piergentili, C.,Dornau, A.,Sumpner, N.,Brady, F.,Bialik, K.,McCorvie, T.,Sissi, C.,Basle, A.,Clarke, D.J.,Marles-Wright, J.
Single particle cryo-EM analysis of the Rhodospirillum rubrum encapsulin nanocompartment shows variable loading of encapsulated ferritin cargo proteins and differences in the fivefold pore.
J.Struct.Biol., 218:108357-108357, 2026
Cited by
PubMed Abstract: Encapsulins are self-assembling protein nanocompartments found in bacteria and archaea that encapsulate cargo enzymes to protect the cell from their toxic reaction products or intermediates. Developments in cryo-electron microscopy (cryo-EM) data processing strategies have enabled encapsulins and their cargo proteins to be investigated together in greater detail. In this study, we present the single particle cryo-EM structure of the Rhodospirillum rubrum encapsulin in both the presence and absence of its partner encapsulated ferritin (EncFtn). Single particle icosahedral reconstructions of empty and loaded encapsulins revealed a higher degree of conformational flexibility at the five-fold pore in the cargo loaded encapsulin. We applied a new non-point group averaging workflow to analyze the encapsulated ferritins within the encapsulin nanocompartment, to produce the first fully refined in situ atomic model of the EncFtn at 2.8 Å resolution. Masked 2D classification and particle subtraction demonstrate that cargo loading is heterogeneous in this recombinant complex, with the encapsulin able to house up to five of the decameric EncFtn complexes. Our data provides new insights into the dynamics and cargo arrangement in encapsulins and demonstrates an adaptable workflow for high resolution reconstruction of encapsulin cargoes.
PubMed: 42603627
DOI: 10.1016/j.jsb.2026.108357
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.73 Å)
Structure validation

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PDB entries from 2026-09-02

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