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镓对小鼠和人单核细胞破骨细胞分化的分子作用。

Molecular effects of gallium on osteoclastic differentiation of mouse and human monocytes.

机构信息

GéPITOs, Université de Nice, CNRS, UMR 6235, UFR Médecine, 28 Avenue de Valombrose, 06107 Nice, Cedex 2, France.

出版信息

Biochem Pharmacol. 2012 Mar 1;83(5):671-9. doi: 10.1016/j.bcp.2011.12.015. Epub 2011 Dec 19.

Abstract

We had previously reported that gallium (Ga) inhibited both the differentiation and resorbing activity of osteoclasts in a dose-dependent manner. To provide new insights into Ga impact on osteoclastogenesis, we investigated here the molecular mechanisms of Ga action on osteoclastic differentiation of monocytes upon Rankl treatment. We first observed that Ga treatment inhibited the expression of Rankl-induced early differentiation marker genes, while the same treatment performed subsequently did not modify the expression of late differentiation marker genes. Focusing on the early stages of osteoclast differentiation, we observed that Ga considerably disturbed both the initial induction as well as the autoamplification step of Nfatc1 gene. We next demonstrated that Ga strongly up-regulated the expression of Traf6, p62 and Cyld genes, and we observed concomitantly an inhibition of IκB degradation and a blockade of NFκB nuclear translocation, which regulates the initial induction of Nfatc1 gene expression. In addition, Ga inhibited c-Fos gene expression, and subsequently the auto-amplification stage of Nfatc1 gene expression. Lastly, considering calcium signaling, we observed upon Ga treatment an inhibition of calcium-induced Creb phosphorylation, as well as a blockade of gadolinium-induced calcium entry through TRPV-5 calcium channels. We identify for the first time Traf6, p62, Cyld, IκB, NFκB, c-Fos, and the calcium-induced Creb phosphorylation as molecular targets of Ga, this tremendously impacting the expression of the master transcription factor Nfatc1. In addition, our results strongly suggest that the TRPV-5 calcium channel, which is located within the plasma membrane, is a target of Ga action on human osteoclast progenitor cells.

摘要

我们之前曾报道过,镓(Ga)以剂量依赖的方式抑制破骨细胞的分化和吸收活性。为了深入了解 Ga 对破骨细胞生成的影响,我们在此研究了 Ga 对单核细胞在 Rankl 处理下破骨细胞分化的分子机制。我们首先观察到 Ga 处理抑制了 Rankl 诱导的早期分化标志物基因的表达,而随后相同的处理并未改变晚期分化标志物基因的表达。在关注破骨细胞分化的早期阶段时,我们观察到 Ga 显著干扰了 Nfatc1 基因的初始诱导和自动扩增步骤。接下来,我们证明 Ga 强烈地上调了 Traf6、p62 和 Cyld 基因的表达,同时观察到 IκB 降解的抑制和 NFκB 核易位的阻断,这调节了 Nfatc1 基因表达的初始诱导。此外,Ga 抑制了 c-Fos 基因的表达,随后抑制了 Nfatc1 基因表达的自动扩增阶段。最后,考虑到钙信号,我们观察到 Ga 处理抑制了钙诱导的 Creb 磷酸化,以及阻断了 gadolinium 通过 TRPV-5 钙通道诱导的钙内流。我们首次确定了 Traf6、p62、Cyld、IκB、NFκB、c-Fos 和钙诱导的 Creb 磷酸化是 Ga 的分子靶标,这极大地影响了主转录因子 Nfatc1 的表达。此外,我们的结果强烈表明,位于质膜内的 TRPV-5 钙通道是 Ga 作用于人类破骨细胞前体细胞的靶标。

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