Plasticity of distal nephron epithelia from human kidney organoids enables the induction of ureteric tip and stalk.

Howden, Sara E; Wilson, Sean B; Groenewegen, Ella; Starks, Lakshi; Forbes, Thomas A; Tan, Ker Sin; Vanslambrouck, Jessica M; Holloway, Emily M et al. · Cell Stem Cell · 2021

basic_science · Level V

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Abstract

During development, distinct progenitors contribute to the nephrons versus the ureteric epithelium of the kidney. Indeed, previous human pluripotent stem-cell-derived models of kidney tissue either contain nephrons or pattern specifically to the ureteric epithelium. By re-analyzing the transcriptional distinction between distal nephron and ureteric epithelium in human fetal kidney, we show here that, while existing nephron-containing kidney organoids contain distal nephron epithelium and no ureteric epithelium, this distal nephron segment alone displays significant in vitro plasticity and can adopt a ureteric epithelial tip identity when isolated and cultured in defined conditions. "Induced" ureteric epithelium cultures can be cryopreserved, serially passaged without loss of identity, and transitioned toward a collecting duct fate. Cultures harboring loss-of-function mutations in PKHD1 also recapitulate the cystic phenotype associated with autosomal recessive polycystic kidney disease.

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