首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Phospholipase Cγ1 (PLCγ1) Controls Osteoclast Numbers via Colony-stimulating Factor 1 (CSF-1)-dependent Diacylglycerol/β-Catenin/CyclinD1 Pathway
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Phospholipase Cγ1 (PLCγ1) Controls Osteoclast Numbers via Colony-stimulating Factor 1 (CSF-1)-dependent Diacylglycerol/β-Catenin/CyclinD1 Pathway

机译:磷脂酶Cγ1(PLCγ1)通过集落刺激因子1(CSF-1)依赖性二酰基甘油/β-连环蛋白/ CyclinD1途径控制破骨细胞数量

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摘要

Phospholipases Cγ (PLCγ) 1 and 2 are a class of highly homologous enzymes modulating a variety of cellular pathways through production of inositol 1,4,5-trisphosphate and diacylglycerol (DAG). Our previous studies demonstrated the importance of PLCγ2 in osteoclast (OC) differentiation by modulating inositol 1,4,5-trisphosphate-mediated calcium oscillations and the up-regulation of the transcription factor NFATc1. Surprisingly, despite being expressed throughout osteoclastogenesis, PLCγ1 did not compensate for PLCγ2 deficiency. Because both isoforms are activated during osteoclastogenesis, it is plausible that PLCγ1 modulates OC development independently of PLCγ2. Here, we utilized PLCγ1-specific shRNAs to delete PLCγ1 in OC precursors derived from wild type (WT) mice. Differently from PLCγ2, we found that PLCγ1 shRNA significantly suppresses OC differentiation by limiting colony-stimulating factor 1 (CSF-1)-dependent proliferation and β-catenin/cyclinD1 levels. Confirming the specificity toward CSF-1 signaling, PLCγ1 is recruited to the CSF-1 receptor following exposure to the cytokine. To understand how PLCγ1 controls cell proliferation, we turned to its downstream effector, DAG. By utilizing cells lacking the DAG kinase ζ, which have increased DAG levels, we demonstrate that DAG modulates CSF-1-dependent proliferation and β-catenin/cyclinD1 levels in OC precursors. Most importantly, the proliferation and osteoclastogenesis defects observed in the absence of PLCγ1 are normalized in PLCγ1/DAG kinase ζ double null cells. Taken together, our study shows that PLCγ1 controls OC numbers via a CSF-1-dependent DAG/β-catenin/cyclinD1 pathway.
机译:磷脂酶Cγ(PLCγ)1和2是一类高度同源的酶,通过产生肌醇1,4,5-三磷酸和二酰基甘油(DAG)来调节多种细胞途径。我们先前的研究表明,通过调节肌醇1,4,5-三磷酸酯介导的钙振荡和转录因子NFATc1的上调,PLCγ2在破骨细胞(OC)分化中的重要性。令人惊讶的是,尽管在整个破骨细胞形成过程中都有表达,但PLCγ1并不能弥补PLCγ2的缺乏。因为两种同工型都在破骨细胞形成过程中被激活,所以PLCγ1独立于PLCγ2调节OC发育是合理的。在这里,我们利用PLCγ1特异性shRNA删除野生型(WT)小鼠的OC前体中的PLCγ1。与PLCγ2不同,我们发现PLCγ1shRNA通过限制集落刺激因子1(CSF-1)依赖性增殖和β-catenin/ cyclinD1水平来显着抑制OC分化。确认了对CSF-1信号传导的特异性,PLCγ1在暴露于细胞因子后被募集到CSF-1受体。为了了解PLCγ1如何控制细胞增殖,我们转向其下游效应子DAG。通过利用缺乏DAG激酶ζ的细胞(已增加DAG的水平),我们证明DAG可以调节OC前体中CSF-1依赖性增殖和β-catenin/ cyclinD1的水平。最重要的是,在不存在PLCγ1的情况下观察到的增殖和破骨细胞形成缺陷在PLCγ1/ DAG激酶ζ双无效细胞中被归一化。综上所述,我们的研究表明PLCγ1通过CSF-1依赖性DAG /β-catenin/ cyclinD1途径控制OC数。

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