Chondrocytes in the resting zone of the growth plate are maintained in a Wnt-inhibitory environment.

Hallett, Shawn A; Matsushita, Yuki; Ono, Wanida; Sakagami, Naoko; Mizuhashi, Koji; Tokavanich, Nicha; Nagata, Mizuki; Zhou, Annabelle et al. · Elife · 2021

basic_science · Level V

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Abstract

Chondrocytes in the resting zone of the postnatal growth plate are characterized by slow cell cycle progression, and encompass a population of parathyroid hormone-related protein (PTHrP)-expressing skeletal stem cells that contribute to the formation of columnar chondrocytes. However, how these chondrocytes are maintained in the resting zone remains undefined. We undertook a genetic pulse-chase approach to isolate slow cycling, label-retaining chondrocytes (LRCs) using a chondrocyte-specific doxycycline-controllable Tet-Off system regulating expression of histone 2B-linked GFP. Comparative RNA-seq analysis identified significant enrichment of inhibitors and activators for Wnt signaling in LRCs and non-LRCs, respectively. Activation of Wnt/β-catenin signaling in PTHrP<sup>+</sup> resting chondrocytes using <i>Pthlh-creER</i> and <i>Apc</i>-floxed allele impaired their ability to form columnar chondrocytes. Therefore, slow-cycling chondrocytes are maintained in a Wnt-inhibitory environment within the resting zone, unraveling a novel mechanism regulating maintenance and differentiation of PTHrP<sup>+</sup> skeletal stem cells of the postnatal growth plate.

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