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Multifocal, multiphenotypic tumours arising from an MTOR mutation acquired in early embryogenesis

  • Clarissa N. Pacyna
  • , Madhanagopal Anandapadamanaban
  • , Kevin W. Loudon
  • , Iain M. Hay
  • , Olga Perisic
  • , Ruoyan Li
  • , Matthew Byrne
  • , Laura Allen
  • , Kirsty Roberts
  • , Yvette Hooks
  • , Anne Y. Warren
  • , Grant D. Stewart
  • , Menna R. Clatworthy
  • , Sarah A. Teichmann
  • , Sam Behjati
  • , Peter J. Campbell
  • , Roger L. Williams
  • , Thomas J. Mitchell

Research output: Contribution to journalArticlepeer-review

Abstract

Embryogenesis is a vulnerable time. Mutations in developmental cells can result in the wide dissemination of cells predisposed to disease within mature organs. We characterised the evolutionary history of four synchronous renal tumours from a 14-year-old girl using whole genome sequencing alongside single cell and bulk transcriptomic sequencing. Phylogenetic reconstruction timed the origin of all tumours to a multipotent embryonic cell committed to the right kidney, around 4 weeks post-conception. Biochemical and structural analysis of their shared MTOR mutation, absent from normal tissues, demonstrates enhanced protein flexibility, enabling a FAT domain hinge to dramatically increase activity of mTORC1 and mTORC2. Developmental mutations, not usually detected in traditional genetic screening, have vital clinical importance in guiding prognosis, targeted treatment, and family screening decisions for paediatric tumours.

Original languageEnglish (US)
Pages (from-to)3268-3276
Number of pages9
JournalOncogene
Volume43
Issue number44
DOIs
StatePublished - Oct 28 2024

ASJC Scopus subject areas

  • Molecular Biology
  • Genetics
  • Cancer Research

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