EMD-13155

Single-particle
3.66 Å
EMD-13155 Deposition: 01/07/2021
Map released: 28/07/2021
Last modified: 13/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-13155

Cryo-EM density of full-length rXKR9 in complex with a sybody at 3.66A

EMD-13155

Single-particle
3.66 Å
EMD-13155 Deposition: 01/07/2021
Map released: 28/07/2021
Last modified: 13/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Rattus norvegicus, synthetic construct
Sample: rXKR9 with sybody
Fitted models: 7p14 (Avg. Q-score: 0.457)

Deposition Authors: Straub MS , Sawicka M
Cryo-EM structures of the caspase activated protein XKR9 involved in apoptotic lipid scrambling.
Straub MS , Alvadia C , Sawicka M , Dutzler R
(2021) eLife , 10
PUBMED: 34263724
DOI: doi:10.7554/eLife.69800
ISSN: 2050-084X
Abstract:
The exposure of the negatively charged lipid phosphatidylserine on the cell surface, catalyzed by lipid scramblases, is an important signal for the clearance of apoptotic cells by macrophages. The protein XKR9 is a member of a conserved family that has been associated with apoptotic lipid scrambling. Here, we describe structures of full-length and caspase-treated XKR9 from Rattus norvegicus in complex with a synthetic nanobody determined by cryo-electron microscopy. The 43 kDa monomeric membrane protein can be divided into two structurally related repeats, each containing four membrane-spanning segments and a helix that is partly inserted into the lipid bilayer. In the full-length protein, the C-terminus interacts with a hydrophobic pocket located at the intracellular side acting as an inhibitor of protein function. Cleavage by caspase-3 at a specific site releases 16 residues of the C-terminus, thus making the pocket accessible to the cytoplasm. Collectively, the work has revealed the unknown architecture of the XKR family and has provided initial insight into its activation by caspases.