Recapitulating and reversing human brain ribosomopathy defects via the maladaptive integrated stress response.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38306425.
- Also identified by DOI 10.1126/sciadv.adk1034 and PMC identifier 10836730.
- Licence recorded as CC BY-NC.
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Abstract
Animal or human models recapitulating brain ribosomopathies are incomplete, hampering development of urgently needed therapies. Here, we generated genetic mouse and human cerebral organoid models of brain ribosomopathies, caused by mutations in small nucleolar RNA (snoRNA) <i>SNORD118</i>. Both models exhibited protein synthesis loss, proteotoxic stress, and p53 activation and led to decreased proliferation and increased death of neural progenitor cells (NPCs), resulting in brain growth retardation, recapitulating features in human patients. Loss of <i>SNORD118</i> function resulted in an aberrant upregulation of p-eIF2α, the mediator of integrated stress response (ISR). Using human iPSC cell-based screen, we identified small-molecule 2BAct, an ISR inhibitor, which potently reverses mutant NPC defects. Targeting ISR by 2BAct mitigated ribosomopathy defects in both cerebral organoid and mouse models. Thus, our <i>SNORD118</i> mutant organoid and mice recapitulate human brain ribosomopathies and cross-validate maladaptive ISR as a key disease-driving mechanism, pointing to a therapeutic intervention strategy.
Medical subject headings
- Brain
- Protein Biosynthesis