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Updated: Mar 12, 2026

Laser Capture Microdissection of Mouse Embryonic Cartilage and Bone for Gene Expression Analysis
Published on: December 18, 2019
Stage- and cluster-specific regulation of chondrogenic gene programs by Sox9 in mouse embryonic limb buds
Masayasu Sega1,2, Yutaro Uchida1,3, Tomoki Chiba1
1Department of Systems BioMedicine, Graduate School of Medical and Dental Sciences, Institute of Science Tokyo, 1-5-45, Yushima, Bunkyo-Ku, Tokyo 113-8510, Japan.
Abstract:
Cartilage formation in the limb is initiated and sustained by Sox9, though how its regulatory outputs evolve across developmental time and cell states remains unclear. Here, we integrate single-cell RNA sequencing of mouse forelimb buds across five stages (E9.5-E13.5) with CUT&RUN profiling of Ty1-tagged Sox9 at E11.5 and E13.5. We identify four Sox9-high populations-three chondroprogenitor clusters and mature chondrocytes-with distinct dynamics, and RNA-velocity infers independent trajectories from each progenitor cluster to maturation. Sox9 chromatin occupancy shows a conserved motif signature but undergoes stage- and cluster-dependent reconfiguration, aligning with shifts in extracellular matrix, cell-cycle, and patterning programs. Integrative analysis links these binding differences with coordinated transcriptional changes, suggesting that Sox9 operates through context-associated regulatory modes rather than a single uniform program. Our study provides a stage-resolved regulatory map of Sox9-associated regulation during chondrogenesis and a resource for limb mesenchyme.
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