p14<sup>ARF</sup> forms meso-scale assemblies upon phase separation with NPM1.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39528457.
- Also identified by DOI 10.1038/s41467-024-53904-z and PMC identifier 11555371.
- Licence recorded as CC BY-NC-ND.
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Abstract
NPM1 is an abundant nucleolar chaperone that, in addition to facilitating ribosome biogenesis, contributes to nucleolar stress responses and tumor suppression through its regulation of the p14 Alternative Reading Frame tumor suppressor protein (p14<sup>ARF</sup>). Oncogenic stress induces p14<sup>ARF</sup> to inhibit MDM2, stabilize p53 and arrest the cell cycle. Under non-stress conditions, NPM1 stabilizes p14<sup>ARF</sup> in nucleoli, preventing its degradation and blocking p53 activation. However, the mechanisms underlying the regulation of p14<sup>ARF</sup> by NPM1 are unclear because the structural features of the p14<sup>ARF</sup>-NPM1 complex were elusive. Here we show that p14<sup>ARF</sup> assembles into a gel-like meso-scale network upon phase separation with NPM1. This assembly is mediated by intermolecular contacts formed by hydrophobic residues in an α-helix and β-strands within a partially folded N-terminal portion of p14<sup>ARF</sup>. These hydrophobic interactions promote phase separation with NPM1, enhance p14<sup>ARF</sup> nucleolar partitioning, restrict NPM1 diffusion within condensates and nucleoli, and reduce cellular proliferation. Our structural analysis provides insights into the multifaceted chaperone function of NPM1 in nucleoli by mechanistically linking the nucleolar localization of p14<sup>ARF</sup> to its partial folding and meso-scale assembly upon phase separation with NPM1.
Medical subject headings
- Nucleophosmin
- Nuclear Proteins
- Tumor Suppressor Protein p14ARF
- Cell Nucleolus