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首页|Loss of Foxc1 and Foxc2 function in chondroprogenitor cells disrupts endochondral ossification

Loss of Foxc1 and Foxc2 function in chondroprogenitor cells disrupts endochondral ossification

Loss of Foxc1 and Foxc2 function in chondroprogenitor cells disrupts endochondral ossification

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Endochondral ossification forms and grows the majority of the mammalian skeleton and is tightly controlled through gene regulatory networks. The forkhead box transcription factors Foxc1 and Foxc2 have been demonstrated to regulate aspects of osteoblast function in the formation of the skeleton but their roles in chondrocytes to control endochondral ossification are less clear. We demonstrate that Foxc1 expression is directly regulated by SOX9 activity, one of the earliest transcription factors to specify the chondrocyte lineages. Moreover we demonstrate that elevelated expression of Foxc1 promotes chondrocyte differentiation in mouse embryonic stem cells and loss of Foxc1 function inhibits chondrogenesis in vitro. Using chondrocyte-targeted deletion of Foxc1 and Foxc2 in mice, we reveal a role for these factors in chondrocyte differentiation in vivo. Loss of both Foxc1 and Foxc2 caused a general skeletal dysplasia predominantly affecting the vertebral column. The long bones of the limb were smaller and mineralization was reduced and organization of the growth plate was disrupted. In particular, the stacked columnar organization of the proliferative chondrocyte layer was reduced in size and cell proliferation in growth plate chondrocytes was reduced. Differential gene expression analysis indicated disrupted expression patterns in chondrogenesis and ossification genes throughout the entire process of endochondral ossification in Col2-cre;Foxc1Δ/Δ;Foxc2Δ/Δ embryos. Our results suggest that Foxc1 and Foxc2 are required for correct chondrocyte differentiation and function. Loss of both genes results in disorganization of the growth plate, reduced chondrocyte proliferation and delays in chondrocyte hypertrophy that prevents correct ossification of the endochondral skeleton.

Srnic Nikola、Berry Fred B、Maripuri Devi P.、Hu Yawen、Lavy Rotem、Kume Tsutomo、Almubarak Asra

Department of Surgery, University of AlbertaDepartment of Medical Genetics, University of Alberta||Department of Surgery, University of AlbertaDepartment of Medical Genetics, University of AlbertaDepartment of Medical Genetics, University of AlbertaDepartment of Surgery, University of AlbertaFeinberg Cardiovascular and Renal Research Institute, Feinberg School of Medicine, Department of Medicine, Northwestern UniversityDepartment of Medical Genetics, University of Alberta

10.1101/2021.01.27.428508

细胞生物学遗传学分子生物学

Forkhead boxtranscription factorschondrocytesboneGene regulation

Srnic Nikola,Berry Fred B,Maripuri Devi P.,Hu Yawen,Lavy Rotem,Kume Tsutomo,Almubarak Asra.Loss of Foxc1 and Foxc2 function in chondroprogenitor cells disrupts endochondral ossification[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2021.01.27.428508.点此复制

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