EMD-13923

Single-particle
3.7 Å
EMD-13923 Deposition: 29/11/2021
Map released: 02/02/2022
Last modified: 17/07/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-13923

Apo human SKI complex in the closed state

EMD-13923

Single-particle
3.7 Å
EMD-13923 Deposition: 29/11/2021
Map released: 02/02/2022
Last modified: 17/07/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens
Sample: H.s. SKI complex in the apo closed state
Fitted models: 7qdr (Avg. Q-score: 0.463)

Deposition Authors: Koegel A, Keidel A
The human SKI complex regulates channeling of ribosome-bound RNA to the exosome via an intrinsic gatekeeping mechanism.
Kogel A , Keidel A , Bonneau F , Schafer IB, Conti E
(2022) Mol Cell , 82 , 756
PUBMED: 35120588
DOI: doi:10.1016/j.molcel.2022.01.009
ISSN: 1097-2765
ASTM: MOCEFL
Abstract:
The superkiller (SKI) complex is the cytoplasmic co-factor and regulator of the RNA-degrading exosome. In human cells, the SKI complex functions mainly in co-translational surveillance-decay pathways, and its malfunction is linked to a severe congenital disorder, the trichohepatoenteric syndrome. To obtain insights into the molecular mechanisms regulating the human SKI (hSKI) complex, we structurally characterized several of its functional states in the context of 80S ribosomes and substrate RNA. In a prehydrolytic ATP form, the hSKI complex exhibits a closed conformation with an inherent gating system that effectively traps the 80S-bound RNA into the hSKI2 helicase subunit. When active, hSKI switches to an open conformation in which the gating is released and the RNA 3' end exits the helicase. The emerging picture is that the gatekeeping mechanism and architectural remodeling of hSKI underpin a regulated RNA channeling system that is mechanistically conserved among the cytoplasmic and nuclear helicase-exosome complexes.