Annexin V and terminal differentiation of growth plate chondrocytes

被引:25
|
作者
Wang, W [1 ]
Xu, JP [1 ]
Kirsch, T [1 ]
机构
[1] Univ Maryland, Sch Med, Dept Orthopaed, Musculoskeletal Res Labs, Baltimore, MD 21201 USA
关键词
annexin V; calcium channels; chondrocytes; growth plate; mineralization terminal differentiation;
D O I
10.1016/j.yexcr.2004.12.022
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Terminal differentiation and mineralization are the final events in endochondral bone formation and allow the replacement of cartilage by bone. Retinoic acid (RA) stimulates these events, including upregulation of expression and activity of alkaline phosphatase (APase), expression of annexins II, V, and VI proteins, which bind to membranes and form Ca2+ channels, expression of osteocalcin and runx2, another mineralization-related protein and terminal differentiation-related transcription factor, and ultimately mineralization. Chelating cytosolic Ca2+ with BAPTA-AM, interfering with annexin Ca2+ channel activities using K-201, a specific annexin Ca2+ channel blocker, or suppression of annexin V expression using siRNA inhibited these events. Overexpression of annexin V in embryonic chicken growth plate chondrocytes resulted in an increase of cytoplasmic Ca2+ concentration, [Ca2+](i) similar to [Ca2+](i) increase in RA-treated cultures. Overexpression of annexin V also resulted in upregulation of annexin II, annexin VI, osteocalcin, and runx2 gene expression, expression and activity of APase, and ultimately stimulation of mineralization. K-201 inhibited upregulation of osteocalcin and runx2 gene expression, APase expression and activity, and mineralization in annexin V-overexpressing growth plate chondrocytes. These findings indicate that annexins II, V, and VI alter Ca2+ homeostasis in growth plate chondrocytes thereby regulating terminal differentiation and mineralization events. Overexpression of annexin V is sufficient to stimulate these terminal differentiation events in growth plate chondrocytes, whereas suppression of annexin V expression inhibits these events. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:156 / 165
页数:10
相关论文
共 50 条
  • [41] Cyclooxygenases and prostaglandin E2 receptors in growth plate chondrocytes in vitro and in situ – prostaglandin E2dependent proliferation of growth plate chondrocytes
    Christoph Brochhausen
    Pia Neuland
    C James Kirkpatrick
    Rolf M Nüsing
    Günter Klaus
    Arthritis Research & Therapy, 8
  • [42] Mesenchyme-specific Knockout of ESET Histone Methyltransferase Causes Ectopic Hypertrophy and Terminal Differentiation of Articular Chondrocytes
    Lawson, Kevin A.
    Teteak, Colin J.
    Zou, Junhui
    Hacquebord, Jacques
    Ghatan, Andrew
    Zielinska-Kwiatkowska, Anna
    Fernandes, Russell J.
    Chansky, Howard A.
    Yang, Liu
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (45) : 32119 - 32125
  • [43] Rat growth plate chondrocytes express low levels of 25-hydroxy-1α-hydroxylase
    Hügel, U
    Weber, L
    Reichrath, J
    Mehls, O
    Klaus, G
    JOURNAL OF STEROID BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2004, 89-90 (1-5) : 143 - 147
  • [44] Autophagy: A New Phase in the Maturation of Growth Plate Chondrocytes Is Regulated by HIF, mTOR and AMP Kinase
    Srinivas, Vickram
    Bohensky, Jolene
    Shapiro, Irving M.
    CELLS TISSUES ORGANS, 2009, 189 (1-4) : 88 - 92
  • [45] Immunocytochemical demonstration of glucose transporters in epiphyseal growth plate chondrocytes of young rats in correlation with autoradiographic distribution of 2-deoxyglucose in chondrocytes of mice
    Ohara, H
    Tamayama, T
    Maemura, K
    Kanbara, K
    Hayasaki, H
    Abe, M
    Watanabe, M
    ACTA HISTOCHEMICA, 2001, 103 (04) : 365 - 378
  • [46] VISUALIZATION OF LIVING TERMINAL HYPERTROPHIC CHONDROCYTES OF GROWTH PLATE CARTILAGE INSITU BY DIFFERENTIAL INTERFERENCE CONTRAST MICROSCOPY AND TIME-LAPSE CINEMATOGRAPHY
    FARNUM, CE
    TURGAI, J
    WILSMAN, NJ
    JOURNAL OF ORTHOPAEDIC RESEARCH, 1990, 8 (05) : 750 - 763
  • [47] Growth Plate Borderline Chondrocytes Behave as Transient Mesenchymal Precursor Cells
    Mizuhashi, Koji
    Nagata, Mizuki
    Matsushita, Yuki
    Ono, Wanida
    Ono, Noriaki
    JOURNAL OF BONE AND MINERAL RESEARCH, 2019, 34 (08) : 1387 - 1392
  • [48] Microtubules are potential regulators of growth-plate chondrocyte differentiation and hypertrophy
    Farquharson, C
    Lester, D
    Seawright, E
    Jefferies, D
    Houston, B
    BONE, 1999, 25 (04) : 405 - 412
  • [49] Aggrecan is required for growth plate cytoarchitecture and differentiation
    Lauing, Kristen L.
    Cortes, Mauricio
    Domowicz, Miriam S.
    Henry, Judith G.
    Baria, Alexis T.
    Schwartz, Nancy B.
    DEVELOPMENTAL BIOLOGY, 2014, 396 (02) : 224 - 236
  • [50] Epithelial-mesenchymal transition and mesenchymal-epithelial transition response during differentiation of growth-plate chondrocytes in endochondral ossification
    Zhou, Shasha
    Shen, Yihang
    Wang, Linlin
    Li, Pin
    INTERNATIONAL JOURNAL OF CLINICAL AND EXPERIMENTAL MEDICINE, 2015, 8 (08): : 12076 - +