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Constitutive activation of the alternative NF-kappa B pathway disturbs endochondral ossification

机译:替代NF-Kappa途径的本构激活涉及Disturbs Confochongral骨化

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摘要

Endochondral ossification is important for skeletal development. Recent findings indicate that the p65 (RelA) subunit, a main subunit of the classical nuclear factor-kappa B (NF-kappa B) pathway, plays essential roles in chondrocyte differentiation. Although several groups have reported that the alternative NF-kappa B pathway also regulates bone homeostasis, the role of the alternative NF-kappa B pathway in chondrocyte development is still unclear. Here, we analyzed the in vivo function of the alternative pathway on endochondral ossification using p100-deficient (p100(-/-)) mice, which carry a homozygous deletion of the COON-terminal ankyrin repeats of p100 but still express functional p52 protein. The alternative pathway was activated during the periarticular stage in wild-type mice. p100(-/-) mice exhibited dwarfism, and histological analysis of the growth plate revealed abnormal arrangement of chondrocyte columns and a narrowed hypertrophic zone. Consistent with these observations, the expression of hypertrophic chondrocyte markers, type X collagen (ColX) or matrix metalloproteinase 13, but not early chondrogenic markers, such as Col II or aggrecan, was suppressed in p100(-/-) mice. An in vivo BrdU tracing assay clearly demonstrated less proliferative activity in chondrocytes in p100(-/-) mice. These defects were partly rescued when the RelB gene was deleted in p100(-/-) mice. Taken together, the alternative NF-kappa B pathway may regulate chondrocyte proliferation and differentiation to maintain endochondral ossification.
机译:Contochondral骨化对于骨骼发育很重要。最近的发现表明,P65(Rela)亚基,古典核因子-Kappa(NF-Kappa B)途径的主要亚基,在软骨细胞分化中起重要作用。虽然几组综述替代的NF-κB途径也调节骨稳态,但替代NF-Kappa B途径在软骨细胞发育中的作用仍然不清楚。在这里,我们使用P100缺陷(P100( - / - ))小鼠分析了替代途径的体内功能(P100( - / - ))小鼠,该小鼠携带纯合的P100的官核末端Ankyrin重复但仍然表达功能性P52蛋白。在野生型小鼠的膜阶段期间活化替代途径。 P100( - / - )小鼠表现出侏儒症,生长板的组织学分析显示软骨细胞柱的异常排列和狭窄的肥厚区。与这些观察结果一致,在P100( - / - )小鼠中抑制了抑菌软骨细胞标记物,X胶原(COLX)或基质金属蛋白酶13的表达,但不是早期的软骨制性标记,例如COL II或egcecan。体内Brdu追踪测定在P100(/ - )小鼠中清楚地证明了软骨细胞中的较少增殖活性。当在P100( - / - )小鼠中缺失Relb基因时,这些缺陷部分拯救。替代的替代NF-Kappa B途径可以调节软骨细胞增殖和分化,以维持尖端骨化化。

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  • 来源
    《Bone 》 |2019年第2019期| 共13页
  • 作者单位

    Kyushu Dent Univ Div Mol Signaling &

    Biochem 2-6-1 Manazuru Kitakyushu Fukuoka 8038580 Japan;

    Kyushu Dent Univ Dept Hlth Improvement Div Anat Kokurakita Ku 2-6-1 Manazuru Kitakyushu;

    Kyushu Dent Univ Div Mol Signaling &

    Biochem 2-6-1 Manazuru Kitakyushu Fukuoka 8038580 Japan;

    Nagasaki Univ Grad Sch Biomed Sci Unit Basic Med Sci Dept Cell Biol 1-7-1 Sakamoto Nagasaki;

    Hanzomon Hosp Chiyoda Ku 1-10-5 Kojimachi Tokyo 1020083 Japan;

    Tokushima Univ Dept Oral Mol Pathol Grad Sch Biomed Sci 3-18-15 Kuramoto Tokushima 7708504;

    Fritz Lipmann Inst Leibniz Inst Aging Res Grp Immunol Beutenbergstr 11 D-07745 Jena Germany;

    Tokushima Univ Grad Sch Biomed Sci Dept Pediat Dent 3-18-15 Kuramoto Tokushima 7708504 Japan;

    Kyushu Univ Lab Mol &

    Cellular Biochem Higashi Ku 3-1-1 Maidashi Fukuoka Fukuoka 8128582 Japan;

    Kyushu Dent Univ Div Mol Signaling &

    Biochem 2-6-1 Manazuru Kitakyushu Fukuoka 8038580 Japan;

    Kyushu Dent Univ Div Mol Signaling &

    Biochem 2-6-1 Manazuru Kitakyushu Fukuoka 8038580 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 骨科学(运动系疾病、矫形外科学) ;
  • 关键词

    Chondrocytes; Alternative NF-kappa B pathway; Endochondral ossification;

    机译:软骨细胞;替代NF-Kappa B途径;Contochondral骨化;

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