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Granular component sub-phases direct ribosome biogenesis in the nucleolus

Dogra, P.; Ferrolino, M. C.; Khatun, S.; Tolbert, M.; Miao, Q.; Pruett-Miller, S. M.; Pitre, A.; Tripathi, S.; Campbell, G. E.; Bajpai, R.; Freyaldenhoven, T.; Gibbs, E.; Park, C.-G.; Kriwacki, R. W.

2025-03-04 biochemistry
10.1101/2025.03.01.640913 bioRxiv
Show abstract

The hierarchical, multiphase organization of the nucleolus underlies ribosome biogenesis. Ribonucleoprotein particles that regulate ribosomal subunit assembly are heterogeneously disposed in the granular component (GC) of the nucleolus. However, the molecular origins of the GCs spatial heterogeneity and its association with ribosomal subunit assembly remain poorly understood. Here, using super-resolution microscopy, we uncover that key GC biomolecules, including nucleophosmin (NPM1), surfeit locus protein 6 (SURF6), and ribosomal RNA (rRNA), are heterogeneously localized within sub-phases in the GC. In vitro reconstitution showed that these GC biomolecules form multiphase condensates with SURF6/rRNA-rich core and NPM1-rich shell, providing a mechanistic basis for GCs spatial heterogeneity. SURF6s association with rRNA is weakened upon ribosome subunit assembly, enabling NPM1 to extract assembled subunits from condensates--suggesting an assembly-line-like mechanism of subunit efflux from the GC. Our results establish a framework for understanding the heterogeneous structure of the GC and reveal how its distinct sub-phases facilitate ribosome subunit assembly.

Published in Molecular Cell (predicted rank #2) · training set

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