首页> 外文期刊>The Journal of biological chemistry >Serotonergic 5-HT2B Receptor Controls Tissue-nonspecific Alkaline Phosphatase Activity in Osteoblasts via Eicosanoids and Phosphatidylinositol-specific Phospholipase C
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Serotonergic 5-HT2B Receptor Controls Tissue-nonspecific Alkaline Phosphatase Activity in Osteoblasts via Eicosanoids and Phosphatidylinositol-specific Phospholipase C

机译:Serotonergic 5-HT2B受体通过甲磺酸和磷脂酰肌醇特异性磷脂脂脂脂脂脂脂脂脂脂脂脂脂脂酶C控制成骨细胞中的组织 - 非特异性碱性磷酸酶活性

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In previous studies, we observed that mice knocked out for the serotonin-2B receptor (5-HT2BR) show defects in bone homeostasis. The present work focuses on the downstream targets relaying the anabolic function of this receptor in osteoblasts. A functional link between the 5-HT2BR and the activity of the tissue-nonspecific alkaline phosphatase (TNAP) is established using the C1 osteoprogenitor cell line. During C1 osteogenic differentiation, both 5-HT2BR and TNAP mRNA translations are delayed with respect to extracellular matrix deposition. Once the receptor is expressed, it constitutively controls TNAP activity at a post-translational level along the overall period of mineral deposition. Indeed, pharmacological inhibition of the 5-HT2BR intrinsic activity or shRNA-mediated 5-HT2BR knockdown prevents TNAP activation, but not its mRNA translation. In contrast, agonist stimulation of the receptor further increases TNAP activity during the initial mineralization phase. Building upon our previous observations that the 5-HT2BR couples with the phospholipase A2 pathway and prostaglandin production at the beginning of mineral deposition, we show that the 5-HT2BR controls leukotriene synthesis via phospholipase A2 at the terminal stages of C1 differentiation. These two 5-HT2BR-dependent eicosanoid productions delineate distinct time windows of TNAP regulation during the osteogenic program. Finally, prostaglandins or leukotrienes are shown to relay the post-translational activation of TNAP via stimulation of the phosphatidylinositol-specific phospholipase C. In agreement with the above findings, primary calvarial osteoblasts from 5-HT2BR-null mice exhibit defects in TNAP activity.
机译:在以前的研究中,我们观察到,小鼠敲除对血清素2B受体(5-HT2BR)示出缺陷在骨稳态。目前的工作重点放在中继这种受体在成骨细胞的合成代谢功能的下游目标。 5-HT2BR和组织非特异性碱性磷酸酶(TNAP)的活性之间的功能性连接是使用C1骨细胞系建立的。在C1成骨分化,5-HT2BR和TNAP的mRNA翻译被延迟相对于细胞外基质沉积。一旦受体被表达,它组成控制在沿着矿物沉积的整体周期的翻译后水平TNAP活性。事实上,5-HT2BR内在活性或shRNA介导5-HT2BR击倒防止TNAP活化,而不是它的mRNA翻译的药理学抑制。与此相反,该受体的进一步增加激动剂刺激期间的初始阶段矿化TNAP活性。建立在我们以前的观察5-HT2BR夫妇与磷脂酶A2途径和前列腺素的生成,在矿物沉积的开始,我们表明,5 HT2BR控制白三烯合成通过磷脂酶A2在C1分化的终端阶段。这两个5-HT2BR依赖性类二十烷酸制作成骨节目期间划定TNAP调节的不同的时间窗口。最后,前列腺素或白三烯被示为通过磷脂酰肌醇特异性磷脂酶与上述发现,从在TNAP活动5- HT2BR缺失小鼠表现出缺陷初级颅骨成骨细胞C.在协议中的刺激来中继翻译后活化TNAP的。

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