4.8 Article

Somatic genetic rescue of a germline ribosome assembly defect

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-021-24999-5

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资金

  1. INSERM
  2. Ligue Nationale contre le Cancer (Equipe Labellisee La Ligue 'LIGUE 2020')
  3. CEREDIH (Centre de Reference Deficits Immunitaires Hereditaires)
  4. Agence Nationale de la Recherche under Investissements d'avenir program [ANR-10-IAHU-01]
  5. Blood Cancer UK [12048]
  6. UK Medical Research Council [MR/T012412/1]
  7. Kay Kendall Leukaemia Fund
  8. Wellcome Trust [100140]
  9. MRC
  10. Wellcome Trust
  11. Connor Wright Project
  12. Cambridge National Institute for Health Research Biomedical Research Centre
  13. European Cooperation in Science and Technology (COST) Action European Network for Innovative Diagnosis and treatment of Chronic Neutropenias, EuNet INNOCHRON [CA18233]
  14. [ANR-18-IDEX-0001]

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Acquired somatic EIF6 mutations are common in individuals with Shwachman-Diamond syndrome, providing a selective advantage over non-modified cells. These mutations may serve as a mechanism of somatic genetic rescue in inherited Mendelian disorders.
Shwachman-Diamond syndrome (SDS) is a leukemia predisposition disorder that is caused by defective release of eIF6 during ribosome assembly. Here the authors show that acquired somatic EIF6 mutations are frequent in the hematopoietic cells from individuals with SDS and provide a selective advantage over non-modified cells. Indirect somatic genetic rescue (SGR) of a germline mutation is thought to be rare in inherited Mendelian disorders. Here, we establish that acquired mutations in the EIF6 gene are a frequent mechanism of SGR in Shwachman-Diamond syndrome (SDS), a leukemia predisposition disorder caused by a germline defect in ribosome assembly. Biallelic mutations in the SBDS or EFL1 genes in SDS impair release of the anti-association factor eIF6 from the 60S ribosomal subunit, a key step in the translational activation of ribosomes. Here, we identify diverse mosaic somatic genetic events (point mutations, interstitial deletion, reciprocal chromosomal translocation) in SDS hematopoietic cells that reduce eIF6 expression or disrupt its interaction with the 60S subunit, thereby conferring a selective advantage over non-modified cells. SDS-related somatic EIF6 missense mutations that reduce eIF6 dosage or eIF6 binding to the 60S subunit suppress the defects in ribosome assembly and protein synthesis across multiple SBDS-deficient species including yeast, Dictyostelium and Drosophila. Our data suggest that SGR is a universal phenomenon that may influence the clinical evolution of diverse Mendelian disorders and support eIF6 suppressor mimics as a therapeutic strategy in SDS.

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