gp130/STAT3 signaling is required for homeostatic proliferation and anabolism in postnatal growth plate and articular chondrocytes

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作者
Nancy Q. Liu
Yucheng Lin
Liangliang Li
Jinxiu Lu
Dawei Geng
Jiankang Zhang
Tea Jashashvili
Zorica Buser
Jenny Magallanes
Jade Tassey
Ruzanna Shkhyan
Arijita Sarkar
Noah Lopez
Siyoung Lee
Youngjoo Lee
Liming Wang
Frank A. Petrigliano
Ben Van Handel
Karen Lyons
Denis Evseenko
机构
[1] University of Southern California (USC),Department of Orthopaedic Surgery, Keck School of Medicine of USC
[2] Nanjing Medical University,Department of Orthopaedic Surgery, Nanjing First Hospital
[3] School of Medicine,Department of Orthopaedic Surgery, Zhongda Hospital
[4] Southeast University,Department of Orthopedics
[5] The Affiliated Jiangning Hospital with Nanjing Medical University,Department of Orthopaedic Surgery, Sir Run Run Hospital
[6] Nanjing Medical University,State Key Laboratory of Oral Diseases, Department of Oral and Maxillofacial Surgery
[7] West China Hospital of Stomatology,Department of Radiology, Keck School of Medicine of USC
[8] Sichuan University,Department of Orthopaedic Surgery, David Geffen School of Medicine
[9] University of Southern California (USC),Institute of Digital Medicine
[10] University of California Los Angles (UCLA),undefined
[11] Nanjing Medical University,undefined
[12] Department of Stem Cell Research and Regenerative Medicine,undefined
[13] USC,undefined
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摘要
Growth of long bones and vertebrae is maintained postnatally by a long-lasting pool of progenitor cells. Little is known about the molecular mechanisms that regulate the output and maintenance of the cells that give rise to mature cartilage. Here we demonstrate that postnatal chondrocyte-specific deletion of a transcription factor Stat3 results in severely reduced proliferation coupled with increased hypertrophy, growth plate fusion, stunting and signs of progressive dysfunction of the articular cartilage. This effect is dimorphic, with females more strongly affected than males. Chondrocyte-specific deletion of the IL-6 family cytokine receptor gp130, which activates Stat3, phenocopied Stat3-deletion; deletion of Lifr, one of many co-receptors that signals through gp130, resulted in a milder phenotype. These data define a molecular circuit that regulates chondrogenic cell maintenance and output and reveals a pivotal positive function of IL-6 family cytokines in the skeletal system with direct implications for skeletal development and regeneration.
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