EMD-39863

Composite map
Single-particle
3.3 Å
EMD-39863 Deposition: 23/04/2024
Map released: 14/08/2024
Last modified: 28/08/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-39863

Cryo-EM structure of dimeric WDR11-FAM91A1 complex

EMD-39863

Composite map
Single-particle
3.3 Å
EMD-39863 Deposition: 23/04/2024
Map released: 14/08/2024
Last modified: 28/08/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens
Sample: Cryo-EM structure of dimeric WDR11-FAM91A1 complex
Fitted models: 8z9m

Deposition Authors: Jia GW, Deng QH, Su ZM, Jia D
The WDR11 complex is a receptor for acidic-cluster-containing cargo proteins.
PUBMED: 39013469
DOI: doi:10.1016/j.cell.2024.06.024
ISSN: 1097-4172
Abstract:
Vesicle trafficking is a fundamental process that allows for the sorting and transport of specific proteins (i.e., "cargoes") to different compartments of eukaryotic cells. Cargo recognition primarily occurs through coats and the associated proteins at the donor membrane. However, it remains unclear whether cargoes can also be selected at other stages of vesicle trafficking to further enhance the fidelity of the process. The WDR11-FAM91A1 complex functions downstream of the clathrin-associated AP-1 complex to facilitate protein transport from endosomes to the TGN. Here, we report the cryo-EM structure of human WDR11-FAM91A1 complex. WDR11 directly and specifically recognizes a subset of acidic clusters, which we term super acidic clusters (SACs). WDR11 complex assembly and its binding to SAC-containing proteins are indispensable for the trafficking of SAC-containing proteins and proper neuronal development in zebrafish. Our studies thus uncover that cargo proteins could be recognized in a sequence-specific manner downstream of a protein coat.