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◇ bioRxiv2026-08-13· developmental biology

Loss of Hnf1b in differentiated proximal tubule cells uncovers nephron segment plasticity

Z. Dehghani-Ghobadi, E. Chung, A. Haghighitalab, M. Sayed, C. Ahn, Y.-C. Hu, H.-W. Lim, J.-S. Park

原始摘要(英文原文)· Original abstract
HNF1B is a transcription factor required for proximal tubule (PT) specification during kidney development, but whether it is also required to maintain PT identity after differentiation remains unknown. Using PT-specific genetic deletion in mice, we found that loss of Hnf1b in differentiated PT cells causes cyst formation and early postnatal lethality. PT-specific transcriptomic analysis revealed downregulation of PT-specific gene programs, including Hnf4a and PT-enriched transport and metabolic genes. Strikingly, Hnf1b-deficient PT cells ectopically activated podocyte-specific genes, including Wt1 and Nphs1, demonstrating that PT cells retain the capacity to engage alternative nephron segment programs when identity-stabilizing mechanisms are disrupted. In addition, loss of Hnf1b disrupted epithelial integrity, as evidenced by reduced epithelial adhesion gene expression and induction of mesenchymal markers. Wnt/{beta}-catenin signaling was also aberrantly activated, suggesting broader dysregulation of epithelial homeostasis. These findings establish HNF1B as a critical post-specification regulator of PT identity that sustains PT-specific transcriptional programs and actively suppresses alternative segmental identity programs.
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Loss of Hnf1b in differentiated proximal tubule cells uncovers nephron segment plasticity — 科研速览 Science Skim