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SALL4 is a CRL3REN/KCTD11 substrate that drives Sonic Hedgehog-dependent medulloblastoma

  • Severini L. Lospinoso
  • , E. Loricchio
  • , S. Navacci
  • , I. Basili
  • , R. Alfonsi
  • , F. Bernardi
  • , M. Moretti
  • , M. Conenna
  • , A. Cucinotta
  • , S. Coni
  • , M. Petroni
  • , Smaele E. De
  • , G. Giannini
  • , M. Maroder
  • , G. Canettieri
  • , Angela Mastronuzzi
  • , D. Guardavaccaro
  • , O. Ayrault
  • , P. Infante
  • , F. Bufalieri*
  • Marcotullio L. Di*
*Corresponding author
  • Sapienza University
  • Institut Curie
  • Istituto Superiore di Sanita
  • Université Paris-Saclay
  • University of Rome La Sapienza
  • University of Verona

Research output: Contribution to journalArticle

Abstract

The Sonic Hedgehog (SHH) pathway is crucial regulator of embryonic development and stemness. Its alteration leads to medulloblastoma (MB), the most common malignant pediatric brain tumor. The SHH-MB subgroup is the best genetically characterized, however the molecular mechanisms responsible for its pathogenesis are not fully understood and therapeutic benefits are still limited. Here, we show that the pro-oncogenic stemness regulator Spalt-like transcriptional factor 4 (SALL4) is re-expressed in mouse SHH-MB models, and its high levels correlate with worse overall survival in SHH-MB patients. Proteomic analysis revealed that SALL4 interacts with REN/KCTD11 (here REN), a substrate receptor subunit of the Cullin3-RING ubiquitin ligase complex (CRL3REN) and a tumor suppressor lost in ~30% of human SHH-MBs. We demonstrate that CRL3REN induces polyubiquitylation and degradation of wild type SALL4, but not of a SALL4 mutant lacking zinc finger cluster 1 domain (ΔZFC1). Interestingly, SALL4 binds GLI1 and cooperates with HDAC1 to potentiate GLI1 deacetylation and transcriptional activity. Notably, inhibition of SALL4 suppresses SHH-MB growth both in murine and patient-derived xenograft models. Our findings identify SALL4 as a CRL3REN substrate and a promising therapeutic target in SHH-dependent cancers.
Original languageEnglish
Pages (from-to)170-187
Number of pages18
JournalCell Death and Differentiation
Volume31
Issue number2
DOIs
Publication statusPublished - 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

All Science Journal Classification (ASJC) codes

  • Molecular Biology
  • Cell Biology

Keywords

  • medulloblastoma

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