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A multi-omic atlas of human embryonic skeletal development

Author

Listed:
  • Ken To

    (Wellcome Genome Campus
    University of Cambridge)

  • Lijiang Fei

    (Wellcome Genome Campus)

  • J. Patrick Pett

    (Wellcome Genome Campus)

  • Kenny Roberts

    (Wellcome Genome Campus)

  • Raphael Blain

    (Institut de la Vision)

  • Krzysztof Polański

    (Wellcome Genome Campus)

  • Tong Li

    (Wellcome Genome Campus)

  • Nadav Yayon

    (Wellcome Genome Campus
    Wellcome Genome Campus)

  • Peng He

    (Wellcome Genome Campus
    Wellcome Genome Campus
    University of California, San Francisco)

  • Chuan Xu

    (Wellcome Genome Campus)

  • James Cranley

    (Wellcome Genome Campus
    University of Cambridge)

  • Madelyn Moy

    (Wellcome Genome Campus)

  • Ruoyan Li

    (Wellcome Genome Campus)

  • Kazumasa Kanemaru

    (Wellcome Genome Campus)

  • Ni Huang

    (Wellcome Genome Campus)

  • Stathis Megas

    (Wellcome Genome Campus
    Department of Applied Mathematics and Theoretical Physics)

  • Laura Richardson

    (Wellcome Genome Campus)

  • Rakesh Kapuge

    (Wellcome Genome Campus)

  • Shani Perera

    (Wellcome Genome Campus)

  • Elizabeth Tuck

    (Wellcome Genome Campus)

  • Anna Wilbrey-Clark

    (Wellcome Genome Campus)

  • Ilaria Mulas

    (Wellcome Genome Campus)

  • Fani Memi

    (Wellcome Genome Campus)

  • Batuhan Cakir

    (Wellcome Genome Campus)

  • Alexander V. Predeus

    (Wellcome Genome Campus)

  • David Horsfall

    (Wellcome Genome Campus)

  • Simon Murray

    (Wellcome Genome Campus)

  • Martin Prete

    (Wellcome Genome Campus)

  • Pavel Mazin

    (Wellcome Genome Campus)

  • Xiaoling He

    (University of Cambridge
    University of Cambridge)

  • Kerstin B. Meyer

    (Wellcome Genome Campus)

  • Muzlifah Haniffa

    (Wellcome Genome Campus
    Newcastle University
    Newcastle Hospitals NHS Foundation Trust)

  • Roger A. Barker

    (University of Cambridge
    University of Cambridge)

  • Omer Bayraktar

    (Wellcome Genome Campus)

  • Alain Chédotal

    (Institut de la Vision
    Hospices Civils de Lyon
    INSERM U1314)

  • Christopher D. Buckley

    (University of Oxford)

  • Sarah A. Teichmann

    (Wellcome Genome Campus
    University of Cambridge
    Department of Applied Mathematics and Theoretical Physics
    University of Cambridge)

Abstract

Human embryonic bone and joint formation is determined by coordinated differentiation of progenitors in the nascent skeleton. The cell states, epigenetic processes and key regulatory factors that underlie lineage commitment of these cells remain elusive. Here we applied paired transcriptional and epigenetic profiling of approximately 336,000 nucleus droplets and spatial transcriptomics to establish a multi-omic atlas of human embryonic joint and cranium development between 5 and 11 weeks after conception. Using combined modelling of transcriptional and epigenetic data, we characterized regionally distinct limb and cranial osteoprogenitor trajectories across the embryonic skeleton and further described regulatory networks that govern intramembranous and endochondral ossification. Spatial localization of cell clusters in our in situ sequencing data using a new tool, ISS-Patcher, revealed mechanisms of progenitor zonation during bone and joint formation. Through trajectory analysis, we predicted potential non-canonical cellular origins for human chondrocytes from Schwann cells. We also introduce SNP2Cell, a tool to link cell-type-specific regulatory networks to polygenic traits such as osteoarthritis. Using osteolineage trajectories characterized here, we simulated in silico perturbations of genes that cause monogenic craniosynostosis and implicate potential cell states and disease mechanisms. This work forms a detailed and dynamic regulatory atlas of bone and cartilage maturation and advances our fundamental understanding of cell-fate determination in human skeletal development.

Suggested Citation

  • Ken To & Lijiang Fei & J. Patrick Pett & Kenny Roberts & Raphael Blain & Krzysztof Polański & Tong Li & Nadav Yayon & Peng He & Chuan Xu & James Cranley & Madelyn Moy & Ruoyan Li & Kazumasa Kanemaru &, 2024. "A multi-omic atlas of human embryonic skeletal development," Nature, Nature, vol. 635(8039), pages 657-667, November.
  • Handle: RePEc:nat:nature:v:635:y:2024:i:8039:d:10.1038_s41586-024-08189-z
    DOI: 10.1038/s41586-024-08189-z
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