Paraspeckles are constructed as block copolymer micelles through microphase separation
Yamazaki, T.; Yamamoto, T.; Yoshino, H.; Souquere, S.; Nakagawa, S.; Pierron, G.; Hirose, T.
Show abstract
Paraspeckles are constructed by NEAT1_2 architectural long noncoding RNAs and possess characteristic cylindrical shapes with highly ordered internal organization, distinct from typical liquid-liquid phase-separated condensates. We experimentally and theoretically investigated how the shape and organization of paraspeckles are determined. We identified the NEAT1_2 RNA domains responsible for shell localization of the NEAT1_2 ends, which determine the characteristic internal organization. We then applied a theoretical framework using soft matter physics to understand the principles that determine the NEAT1_2 organization, shape, number, and size of paraspeckles. By treating paraspeckles as amphipathic block copolymer micelles, we could explain and predict the experimentally observed behaviors of paraspeckles upon NEAT1_2 domain deletions or transcriptional modulation. Thus, we propose that paraspeckles are block copolymer micelles assembled through microphase separation. This work provides an experimentally-based theoretical framework for the concept that ribonucleoprotein complexes (RNPs) can act as block copolymers to form RNA-scaffolding microphase-separated condensates in cells.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Principles of assembly and regulation of condensates of Polycomb repressive complex 1 through phase separation 96%
- Polysomes and mRNA control the biophysical properties of the eukaryotic cytoplasm 94%
- True-to-scale DNA-density maps correlate with major accessibility differences between active and inactive chromatin 94%
Similar papers in this journal
- STREAMING-tag system reveals spatiotemporal relationships between transcriptional regulatory factors and transcriptional activity 95%
- The SARS-CoV-2 nucleocapsid protein is dynamic, disordered, and phase separates with RNA 95%
- Nucleocapsid protein of SARS-CoV-2 phase separates into RNA-rich polymerase-containing condensates 94%
Similar papers in this journal
- Treacle's ability to form liquid-like phase condensates is essential for nucleolar fibrillar center assembly, efficient rRNA transcription and processing, and rRNA gene repair 95%
- Molecular determinants of phase separation for Drosophila DNA replication licensing factors 94%
- Biological condensates form percolated networks with molecular motion properties distinctly different from dilute solutions 94%
Similar papers in this journal
- Double-stranded RNA drives SARS-CoV-2 nucleocapsid protein to undergo phase separation at specific temperatures 94%
- H2B.W2, a Spermatocytes-specific Histone Variant, disrupts nucleosome stability and reduces chromatin compaction 94%
- rec-Y2H matrix screening reveals a vast potential for direct protein-protein interactions among RNA binding proteins 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.