Phase separation of PGL-3 driven by structured domains that oligomerize and interact with RGG motifs
Identifier: S-BIAD2412
Published: 2025-12-01 Licence: CC0 Publisher: BioImage Archive
Phase separation (PS) of biomolecular condensates is often assumed to be driven by interactions involving nucleic acids and intrinsically disordered regions (IDRs) of proteins. PGL-3 is a component of P granules, biomolecular condensates in C. elegans, that contains two structured domains in tandem (D1-D2), an internal IDR, and a C-terminal IDR rich with RGG motifs. Theoretical and in vitro studies have implicated the internal IDR and RGG motifs in driving PGL-3 PS via self-interactions and binding to RNA. Studies in cells, however, have implicated the D1 and D2 domains. Here, we investigate the molecular basis of PGL-3 PS in vitro using microscopy, crosslinking mass spectrometry and biophysical measurements. We find that D1-D2 oligomerizes and is necessary and sufficient for PS. The terminal RGG domain interacts with D1-D2 in a manner that enhances PS even in the absence of RNA.. In contrast, the internal IDR is neither necessary nor sufficient for PS. These findings support a new model for PGL-3 PS that is driven by oligomerization of structured domains and enhanced by RGG repeats.
Imaging Methods: confocal microscopy
Organisms: Caenorhabditis elegans