Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Protein-based condensation mechanisms drive the assembly of RNA-rich P granules

View through CrossRef
Germ granules are protein-RNA condensates that segregate with the embryonic germline. In Caenorhabditis elegans embryos, germ (P) granule assembly requires MEG-3, an intrinsically disordered protein that forms RNA-rich condensates on the surface of PGL condensates at the core of P granules. MEG-3 is related to the GCNA family and contains an N-terminal disordered region (IDR) and a predicted ordered C-terminus featuring an HMG-like motif (HMGL). We find that MEG-3 is a modular protein that uses its IDR to bind RNA and its C-terminus to drive condensation. The HMGL motif mediates binding to PGL-3 and is required for co-assembly of MEG-3 and PGL-3 condensates in vivo. Mutations in HMGL cause MEG-3 and PGL-3 to form separate condensates that no longer co-segregate to the germline or recruit RNA. Our findings highlight the importance of protein-based condensation mechanisms and condensate-condensate interactions in the assembly of RNA-rich germ granules.
Title: Protein-based condensation mechanisms drive the assembly of RNA-rich P granules
Description:
Germ granules are protein-RNA condensates that segregate with the embryonic germline.
In Caenorhabditis elegans embryos, germ (P) granule assembly requires MEG-3, an intrinsically disordered protein that forms RNA-rich condensates on the surface of PGL condensates at the core of P granules.
MEG-3 is related to the GCNA family and contains an N-terminal disordered region (IDR) and a predicted ordered C-terminus featuring an HMG-like motif (HMGL).
We find that MEG-3 is a modular protein that uses its IDR to bind RNA and its C-terminus to drive condensation.
The HMGL motif mediates binding to PGL-3 and is required for co-assembly of MEG-3 and PGL-3 condensates in vivo.
Mutations in HMGL cause MEG-3 and PGL-3 to form separate condensates that no longer co-segregate to the germline or recruit RNA.
Our findings highlight the importance of protein-based condensation mechanisms and condensate-condensate interactions in the assembly of RNA-rich germ granules.

Related Results

Modulation of RNA condensation by the DEAD-box protein eIF4A
Modulation of RNA condensation by the DEAD-box protein eIF4A
SUMMARYStress granules are condensates of non-translating mRNAs and proteins involved in the stress response and neurodegenerative diseases. Stress granules form in part through in...
Detecting RNA–RNA interactome
Detecting RNA–RNA interactome
AbstractThe last decade has seen a robust increase in various types of novel RNA molecules and their complexity in gene regulation. RNA molecules play a critical role in cellular e...
Age-dependent remodelling of RNP condensates in Drosophila neurons
Age-dependent remodelling of RNP condensates in Drosophila neurons
Remodelage des condensats RNP neuronaux au cours du vieillissement chez la drosophile Dans la cellule, les molécules d’ARN s’assemblent avec des protéines de liaiso...
Spatial patterning of P granules by RNA-induced phase separation of the intrinsically-disordered protein MEG-3
Spatial patterning of P granules by RNA-induced phase separation of the intrinsically-disordered protein MEG-3
ABSTRACT RNA granules are non-membrane bound cellular compartments that contain RNA and RNA binding proteins. The molecular mechanisms that regul...
Biophysical studies of RNA:DNA:DNA triplexes and characterization of riboswitches in cell-free transcription-translation systems
Biophysical studies of RNA:DNA:DNA triplexes and characterization of riboswitches in cell-free transcription-translation systems
RNA research is very important since RNA molecules are involved in various gene regulatory mechanisms as well as pathways of cell physiology and disease development.1 RNAs have evo...
PIKfyve, un acteur clé impliqué dans la biogénèse des granules plaquettaires, leur intégrité et leur sécrétion
PIKfyve, un acteur clé impliqué dans la biogénèse des granules plaquettaires, leur intégrité et leur sécrétion
La sécrétion des granules plaquettaires est un mécanisme finement régulé et crucial pour les fonctions plaquettaires hémostatiques/thrombotiques afin d'empêcher le saignement lors ...
RMalign: an RNA structural alignment tool based on a size independent scoring function
RMalign: an RNA structural alignment tool based on a size independent scoring function
ABSTRACT RNA-protein 3D complex structure prediction is still challenging. Recently, a template-based approach PRIME is proposed in our team to build RNA-protein co...

Back to Top