| Literature DB >> 27416361 |
Maïwen Caudron-Herger1, Teresa Pankert2, Karsten Rippe2.
Abstract
The nucleolus is a nuclear subcompartment for tightly regulated rRNA production and ribosome subunit biogenesis. It also acts as a cellular stress sensor and can release enriched factors in response to cellular stimuli. Accordingly, the content and structure of the nucleolus change dynamically, which is particularly evident during cell cycle progression: the nucleolus completely disassembles during mitosis and reassembles in interphase. Although the mechanisms that drive nucleolar (re)organization have been the subject of a number of studies, they are only partly understood. Recently, we identified Alu element-containing RNA polymerase II transcripts (aluRNAs) as important for nucleolar structure and rRNA synthesis. Integrating these findings with studies on the liquid droplet-like nature of the nucleolus leads us to propose a model on how RNA polymerase II transcripts could regulate the assembly of the nucleolus in response to external stimuli and during cell cycle progression.Keywords: Alu repeat-containing RNA; RNA-protein droplets-like structures; RNA-protein interactions; cell cycle; intracellular phase separation; nuclear bodies
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Year: 2016 PMID: 27416361 PMCID: PMC4991239 DOI: 10.1080/19491034.2016.1190890
Source DB: PubMed Journal: Nucleus ISSN: 1949-1034 Impact factor: 4.197