7PKR image
Deposition Date 2021-08-26
Release Date 2022-03-16
Last Version Date 2024-07-17
Entry Detail
PDB ID:
7PKR
Title:
Vault structure in primmed conformation
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
3.80 Å
Aggregation State:
PARTICLE
Reconstruction Method:
SINGLE PARTICLE
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:Major vault protein
Gene (Uniprot):Mvp
Chain IDs:A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, Q, R, S, T, U (auth: V), V (auth: W), W (auth: X), X (auth: Y), Y (auth: Z), Z (auth: AA), AA (auth: BA), BA (auth: CA), CA (auth: DA), DA (auth: EA), EA (auth: FA), FA (auth: GA), GA (auth: HA), HA (auth: IA), IA (auth: JA), JA (auth: KA), KA (auth: LA), LA (auth: MA), MA (auth: NA), NA (auth: OA), OA (auth: PA), PA (auth: QA), QA (auth: RA), RA (auth: SA), SA (auth: TA), TA (auth: UA), UA (auth: VA), VA (auth: WA), WA (auth: XA), XA (auth: YA), YA (auth: ZA), ZA (auth: AB), AB (auth: BB), BB (auth: CB), CB (auth: DB), DB (auth: EB), EB (auth: FB), FB (auth: GB), GB (auth: HB), HB (auth: IB), IB (auth: JB), JB (auth: KB), KB (auth: LB), LB (auth: MB), MB (auth: NB), NB (auth: OB), OB (auth: PB), PB (auth: QB), QB (auth: RB), RB (auth: SB), SB (auth: TB), TB (auth: UB), UB (auth: VB), VB (auth: WB), WB (auth: XB), XB (auth: YB), YB (auth: ZB), ZB (auth: AC)
Chain Length:861
Number of Molecules:78
Biological Source:Rattus norvegicus
Ligand Molecules
Primary Citation
Symmetry disruption commits vault particles to disassembly.
Sci Adv 8 eabj7795 eabj7795 (2022)
PMID: 35138889 DOI: 10.1126/sciadv.abj7795

Abstact

Vaults are ubiquitous ribonucleoprotein particles involved in a diversity of cellular processes, with promising applications as nanodevices for delivery of multiple cargos. The vault shell is assembled by the symmetrical association of multiple copies of the major vault protein that, initially, generates half vaults. The pairwise, anti-parallel association of two half vaults produces whole vaults. Here, using a combination of vault recombinant reconstitution and structural techniques, we characterized the molecular determinants for the vault opening process. This process commences with a relaxation of the vault waist, causing the expansion of the inner cavity. Then, local disengagement of amino-terminal domains at the vault midsection seeds a conformational change that leads to the aperture, facilitating access to the inner cavity where cargo is hosted. These results inform a hitherto uncharacterized step of the vault cycle and will aid current engineering efforts leveraging vault for tailored cargo delivery.

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Primary Citation of related structures