Artigo Acesso aberto Revisado por pares

A Nonribosomal Landscape in the Nucleolus Revealed by the Stem Cell Protein Nucleostemin

2005; American Society for Cell Biology; Volume: 16; Issue: 7 Linguagem: Inglês

10.1091/mbc.e05-02-0106

ISSN

1939-4586

Autores

Joan C. Ritland Politz, Ilvin Polena, Ian Trask, David P. Bazett‐Jones, Thoru Pederson,

Tópico(s)

RNA and protein synthesis mechanisms

Resumo

Nucleostemin is a p53-interactive cell cycle progression factor that shuttles between the nucleolus and nucleoplasm, but it has no known involvement in ribosome synthesis. We found the dynamic properties of nucleostemin differed strikingly from fibrillarin (a protein directly involved in rRNA processing) both in response to rRNA transcription inhibition and in the schedule of reentry into daughter nuclei and the nucleolus during late telophase/early G 1 . Furthermore, nucleostemin was excluded from the nucleolar domains in which ribosomes are born—the fibrillar centers and dense fibrillar component. Instead it was concentrated in rRNA-deficient sites within the nucleolar granular component. This finding suggests that the nucleolus may be more subcompartmentalized than previously thought. In support of this concept, electron spectroscopic imaging studies of the nitrogen and phosphorus distribution in the nucleolar granular component revealed regions that are very rich in protein and yet devoid of nucleic acid. Together, these results suggest that the ultrastructural texture of the nucleolar granular component represents not only ribosomal particles but also RNA-free zones populated by proteins or protein complexes that likely serve other functions.

Referência(s)