Convergent somatic evolution commences in utero in a germline ribosomopathy

Author:

Machado Heather E.,Øbro Nina F.,Williams NicholasORCID,Tan Shengjiang,Boukerrou Ahmed Z.,Davies Megan,Belmonte Miriam,Mitchell Emily,Baxter E. Joanna,Mende NicoleORCID,Clay Anna,Ancliff Philip,Köglmeier Jutta,Killick Sally B.,Kulasekararaj Austin,Meyer StefanORCID,Laurenti ElisaORCID,Campbell Peter J.ORCID,Kent David G.ORCID,Nangalia JyotiORCID,Warren Alan J.ORCID

Abstract

AbstractClonal tracking of cells using somatic mutations permits exploration of clonal dynamics in human disease. Here, we perform whole genome sequencing of 323 haematopoietic colonies from 10 individuals with the inherited ribosomopathy Shwachman-Diamond syndrome to reconstruct haematopoietic phylogenies. In ~30% of colonies, we identify mutually exclusive mutations in TP53, EIF6, RPL5, RPL22, PRPF8, plus chromosome 7 and 15 aberrations that increase SBDS and EFL1 gene dosage, respectively. Target gene mutations commence in utero, resulting in a profusion of clonal expansions, with only a few haematopoietic stem cell lineages (mean 8, range 1-24) contributing ~50% of haematopoietic colonies across 8 individuals (range 4-100% clonality) by young adulthood. Rapid clonal expansion during disease transformation is associated with biallelic TP53 mutations and increased mutation burden. Our study highlights how convergent somatic mutation of the p53-dependent nucleolar surveillance pathway offsets the deleterious effects of germline ribosomopathy but increases opportunity for TP53-mutated cancer evolution.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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