Single-cell multiomics reveals ENL mutation perturbs kidney developmental trajectory by rewiring gene regulatory landscape
Male
0301 basic medicine
Science
Organogenesis
Kidney
Wilms Tumor
Article
Epigenesis, Genetic
Histones
Mice
03 medical and health sciences
Animals
Humans
Wnt Signaling Pathway
Q
Gene Expression Regulation, Developmental
Cell Differentiation
Acetylation
Nephrons
Chromatin
Mutation
Female
Single-Cell Analysis
Transcriptome
Transcription Factors
DOI:
10.1038/s41467-024-50171-w
Publication Date:
2024-07-15T11:03:28Z
AUTHORS (11)
ABSTRACT
AbstractHow disruptions to normal cell differentiation link to tumorigenesis remains incompletely understood. Wilms tumor, an embryonal tumor associated with disrupted organogenesis, often harbors mutations in epigenetic regulators, but their role in kidney development remains unexplored. Here, we show at single-cell resolution that a Wilms tumor-associated mutation in the histone acetylation reader ENL disrupts kidney differentiation in mice by rewiring the gene regulatory landscape. Mutant ENL promotes nephron progenitor commitment while restricting their differentiation by dysregulating transcription factors such as Hox clusters. It also induces abnormal progenitors that lose kidney-associated chromatin identity. Furthermore, mutant ENL alters the transcriptome and chromatin accessibility of stromal progenitors, resulting in hyperactivation of Wnt signaling. The impacts of mutant ENL on both nephron and stroma lineages lead to profound kidney developmental defects and postnatal mortality in mice. Notably, a small molecule inhibiting mutant ENL’s histone acetylation binding activity largely reverses these defects. This study provides insights into how mutations in epigenetic regulators disrupt kidney development and suggests a potential therapeutic approach.
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CITATIONS (3)
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