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本文引用的文献

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Interferon regulatory factor-8 regulates bone metabolism by suppressing osteoclastogenesis.干扰素调节因子8通过抑制破骨细胞生成来调节骨代谢。
Nat Med. 2009 Sep;15(9):1066-71. doi: 10.1038/nm.2007. Epub 2009 Aug 30.
2
Coordination of PGC-1beta and iron uptake in mitochondrial biogenesis and osteoclast activation.PGC-1β与铁摄取在线粒体生物发生和破骨细胞激活中的协调作用。
Nat Med. 2009 Mar;15(3):259-66. doi: 10.1038/nm.1910. Epub 2009 Mar 1.
3
NFATc1 in mice represses osteoprotegerin during osteoclastogenesis and dissociates systemic osteopenia from inflammation in cherubism.小鼠中的NFATc1在破骨细胞生成过程中抑制骨保护素,并在 cherubism 中将全身性骨质减少与炎症分离。
J Clin Invest. 2008 Nov;118(11):3775-89. doi: 10.1172/JCI35711. Epub 2008 Oct 9.
4
Osteoclast size is controlled by Fra-2 through LIF/LIF-receptor signalling and hypoxia.破骨细胞的大小由Fra-2通过LIF/LIF受体信号传导和缺氧来控制。
Nature. 2008 Jul 10;454(7201):221-5. doi: 10.1038/nature07019. Epub 2008 Jun 11.
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Osteoimmunology: interactions of the bone and immune system.骨免疫学:骨骼与免疫系统的相互作用
Endocr Rev. 2008 Jun;29(4):403-40. doi: 10.1210/er.2007-0038. Epub 2008 May 1.
6
Regulation and functions of Blimp-1 in T and B lymphocytes.Blimp-1在T和B淋巴细胞中的调控及功能
Annu Rev Immunol. 2008;26:133-69. doi: 10.1146/annurev.immunol.26.021607.090241.
7
Tyrosine kinases Btk and Tec regulate osteoclast differentiation by linking RANK and ITAM signals.酪氨酸激酶Btk和Tec通过连接RANK和ITAM信号来调节破骨细胞分化。
Cell. 2008 Mar 7;132(5):794-806. doi: 10.1016/j.cell.2007.12.037.
8
NFATc1 induces osteoclast fusion via up-regulation of Atp6v0d2 and the dendritic cell-specific transmembrane protein (DC-STAMP).NFATc1通过上调Atp6v0d2和树突状细胞特异性跨膜蛋白(DC-STAMP)诱导破骨细胞融合。
Mol Endocrinol. 2008 Jan;22(1):176-85. doi: 10.1210/me.2007-0237. Epub 2007 Sep 20.
9
Estrogen prevents bone loss via estrogen receptor alpha and induction of Fas ligand in osteoclasts.雌激素通过雌激素受体α及诱导破骨细胞中的Fas配体来预防骨质流失。
Cell. 2007 Sep 7;130(5):811-23. doi: 10.1016/j.cell.2007.07.025.
10
Induction of DC-STAMP by alternative activation and downstream signaling mechanisms.通过交替激活和下游信号传导机制诱导DC-STAMP
J Bone Miner Res. 2007 Jul;22(7):992-1001. doi: 10.1359/jbmr.070401.

Blimp1 介导的负调控因子抑制对于破骨细胞分化是必需的。

Blimp1-mediated repression of negative regulators is required for osteoclast differentiation.

机构信息

Department of Cell Signaling, Tokyo Medical and Dental University, Tokyo 113-8549, Japan.

出版信息

Proc Natl Acad Sci U S A. 2010 Feb 16;107(7):3117-22. doi: 10.1073/pnas.0912779107. Epub 2010 Jan 28.

DOI:10.1073/pnas.0912779107
PMID:20133620
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2840297/
Abstract

Regulation of irreversible cell lineage commitment depends on a delicate balance between positive and negative regulators, which comprise a sophisticated network of transcription factors. Receptor activator of NF-kappaB ligand (RANKL) stimulates the differentiation of bone-resorbing osteoclasts through the induction of nuclear factor of activated T cells c1 (NFATc1), the essential transcription factor for osteoclastogenesis. Osteoclast-specific robust induction of NFATc1 is achieved through an autoamplification mechanism, in which NFATc1 is constantly activated by calcium signaling while the negative regulators of NFATc1 are suppressed. However, it has been unclear how such negative regulators are repressed during osteoclastogenesis. Here we show that B lymphocyte-induced maturation protein-1 (Blimp1; encoded by Prdm1), which is induced by RANKL through NFATc1 during osteoclastogenesis, functions as a transcriptional repressor of anti-osteoclastogenic genes such as Irf8 and Mafb. Overexpression of Blimp1 leads to an increase in osteoclast formation, and Prdm1-deficient osteoclast precursor cells do not undergo osteoclast differentiation efficiently. The importance of Blimp1 in bone homeostasis is underscored by the observation that mice with an osteoclast-specific deficiency in the Prdm1 gene exhibit a high bone mass phenotype caused by a decreased number of osteoclasts. Thus, NFATc1 choreographs the determination of cell fate in the osteoclast lineage by inducing the repression of negative regulators as well as through its effect on positive regulators.

摘要

细胞不可逆谱系定型的调控取决于正调控因子和负调控因子之间的微妙平衡,这些调控因子构成了转录因子的复杂网络。核因子 κB 受体激活物配体 (RANKL) 通过诱导核因子活化 T 细胞 c1 (NFATc1) 刺激破骨细胞的分化,NFATc1 是破骨细胞生成的必需转录因子。破骨细胞特异性的 NFATc1 强烈诱导是通过一个自动扩增机制实现的,其中 NFATc1 被钙信号持续激活,而 NFATc1 的负调控因子被抑制。然而,在破骨细胞生成过程中,这些负调控因子是如何被抑制的还不清楚。在这里,我们发现 B 淋巴细胞诱导成熟蛋白-1 (Blimp1;由 Prdm1 编码),它在破骨细胞生成过程中通过 NFATc1 被诱导,作为抗破骨生成基因 Irf8 和 Mafb 的转录抑制因子。Blimp1 的过表达导致破骨细胞形成增加,而 Prdm1 缺陷的破骨细胞前体细胞不能有效地进行破骨细胞分化。Prdm1 基因在破骨细胞中特异性缺失的小鼠表现出高骨量表型,这突出了 Blimp1 在骨稳态中的重要性,因为这种表型是由于破骨细胞数量减少引起的。因此,NFATc1 通过诱导负调控因子的抑制以及对正调控因子的影响来编排破骨细胞谱系中细胞命运的决定。