Search bioRxiv⌕ Search

Biology subjects

Coray, R.

Publications and source records attributed to Coray, R..

2 recordsLinked to original sources

Cargo-Adaptor Cooperation Programs Retromer Coat Architecture

Retromer drives endosomal cargo retrieval in combination with sorting nexin (SNX) adaptors, but how adaptor-cargo combinations specify coat architecture remains unclear. We identify sorting nexin 12 (SNX12) as the retromer adaptor required for human papillomavirus 16 (HPV16) infection and show that the viral L2 capsid protein tail directly engages SNX12-retromer complexes to trigger membrane tubulation. The crystal structure reveals a conserved cargo-recognition mode, whereas cryo-electron tomography of reconstituted assemblies shows retromer arches organized into two lattice configurations stabilized by membrane-proximal interfaces. These lattices assemble as multi-start helices and accommodate curvature through hinge-like motions between arches. These findings establish cargo and adaptor identity as co-determinants of retromer coat architecture, revealing retromer as a programmable system capable of generating route-specific transport carriers.

cell biology↗

Continuum architecture dynamics of vesicle tethering in exocytosis

Essential for eukaryotic organisms, multiple copies of the exocyst complex tether each secretory vesicle to the plasma membrane (PM) in constitutive exocytosis. The exocyst higher-order structure (ExHOS) that coordinates the action of these multiple exocysts remains unexplored. We integrated particle-tracking, super-resolution microscopy and cryo-electron tomography in a model that time-resolves the continuum conformational landscape of the ExHOS and functionally annotates its different conformations. We found that 7 exocysts form flexible ring-shaped ExHOS that tether vesicles at <45 nm from the PM. The ExHOS, initially 19 nm in radius, rapidly expands while it pulls the vesicle towards the PM. Subsequently, the ExHOS stabilizes, securing the vesicle at [~]4 nm from the PM. After fusion, Sec18 mediates the ExHOS disassembly when its radius is 38 nm. By resolving the fundamental biophysical principles of tethering we bridged the gap between static isolated structures and the dynamic and multimeric nature of exocytosis.

cell biology↗