EMD-32400

Single-particle
5.9 Å
EMD-32400 Deposition: 16/12/2021
Map released: 14/12/2022
Last modified: 14/12/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-32400

The Cryo-EM structure of Drg1 hexamer in helical state treated with ADP/AMPPNP/benzo-diazaborine

EMD-32400

Single-particle
5.9 Å
EMD-32400 Deposition: 16/12/2021
Map released: 14/12/2022
Last modified: 14/12/2022
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Saccharomyces cerevisiae
Sample: Cryo-EM structure of yeast Drg1 in the presence of ADP/AMPPP/diazaborine in helical state

Deposition Authors: Ma CY, Wu DM, Gao N
Structural dynamics of AAA + ATPase Drg1 and mechanism of benzo-diazaborine inhibition.
Ma C, Wu D , Chen Q, Gao N
(2022) Nat Commun , 13 , 6765 - 6765
PUBMED: 36351914
DOI: doi:10.1038/s41467-022-34511-2
ISSN: 2041-1723
Abstract:
The type II AAA + ATPase Drg1 is a ribosome assembly factor, functioning to release Rlp24 from the pre-60S particle just exported from nucleus, and its activity in can be inhibited by a drug molecule diazaborine. However, molecular mechanisms of Drg1-mediated Rlp24 removal and diazaborine-mediated inhibition are not fully understood. Here, we report Drg1 structures in different nucleotide-binding and benzo-diazaborine treated states. Drg1 hexamers transits between two extreme conformations (planar or helical arrangement of protomers). By forming covalent adducts with ATP molecules in both ATPase domain, benzo-diazaborine locks Drg1 hexamers in a symmetric and non-productive conformation to inhibits both inter-protomer and inter-ring communication of Drg1 hexamers. We also obtained a substrate-engaged mutant Drg1 structure, in which conserved pore-loops form a spiral staircase to interact with the polypeptide through a sequence-independent manner. Structure-based mutagenesis data highlight the functional importance of the pore-loop, the D1-D2 linker and the inter-subunit signaling motif of Drg1, which share similar regulatory mechanisms with p97. Our results suggest that Drg1 may function as an unfoldase that threads a substrate protein within the pre-60S particle.