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β-Catenin and FGFR2 regulate postnatal rosette-based adrenocortical morphogenesis

Author

Listed:
  • Sining Leng

    (Boston Children’s Hospital
    Harvard Medical School)

  • Emanuele Pignatti

    (Boston Children’s Hospital
    Harvard Medical School)

  • Radhika S. Khetani

    (Harvard T.H. Chan School of Public Health)

  • Manasvi S. Shah

    (Boston Children’s Hospital
    Harvard Medical School)

  • Simiao Xu

    (Boston Children’s Hospital
    Harvard Medical School)

  • Ji Miao

    (Boston Children’s Hospital
    Harvard Medical School)

  • Makoto M. Taketo

    (Kyoto University)

  • Felix Beuschlein

    (UniversitätsSpital Zürich
    Medizinische Klinik und Poliklinik IV, Klinikum der Ludwig-Maximilians-Universität München)

  • Paula Q. Barrett

    (University of Virginia)

  • Diana L. Carlone

    (Boston Children’s Hospital
    Harvard Medical School
    Harvard Stem Cell Institute)

  • David T. Breault

    (Boston Children’s Hospital
    Harvard Medical School
    Harvard Stem Cell Institute)

Abstract

Rosettes are widely used in epithelial morphogenesis during embryonic development and organogenesis. However, their role in postnatal development and adult tissue maintenance remains largely unknown. Here, we show zona glomerulosa cells in the adult adrenal cortex organize into rosettes through adherens junction-mediated constriction, and that rosette formation underlies the maturation of adrenal glomerular structure postnatally. Using genetic mouse models, we show loss of β-catenin results in disrupted adherens junctions, reduced rosette number, and dysmorphic glomeruli, whereas β-catenin stabilization leads to increased adherens junction abundance, more rosettes, and glomerular expansion. Furthermore, we uncover numerous known regulators of epithelial morphogenesis enriched in β-catenin-stabilized adrenals. Among these genes, we show Fgfr2 is required for adrenal rosette formation by regulating adherens junction abundance and aggregation. Together, our data provide an example of rosette-mediated postnatal tissue morphogenesis and a framework for studying the role of rosettes in adult zona glomerulosa tissue maintenance and function.

Suggested Citation

  • Sining Leng & Emanuele Pignatti & Radhika S. Khetani & Manasvi S. Shah & Simiao Xu & Ji Miao & Makoto M. Taketo & Felix Beuschlein & Paula Q. Barrett & Diana L. Carlone & David T. Breault, 2020. "β-Catenin and FGFR2 regulate postnatal rosette-based adrenocortical morphogenesis," Nature Communications, Nature, vol. 11(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-15332-7
    DOI: 10.1038/s41467-020-15332-7
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