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肌动蛋白微丝介导模拟微重力下成骨细胞 Cbfal 对 BMP2 的反应性。

Actin microfilament mediates osteoblast Cbfa1 responsiveness to BMP2 under simulated microgravity.

机构信息

Faculty of Aerospace Medicine, Fourth Military Medical University, Xi'an, China.

出版信息

PLoS One. 2013 May 10;8(5):e63661. doi: 10.1371/journal.pone.0063661. Print 2013.

Abstract

Microgravity decreases osteoblastic activity, induces actin microfilament disruption and inhibits the responsiveness of osteoblast to cytokines, but the mechanisms remains enigmatic. The F-actin cytoskeleton has previously been implicated in manifold changes of cell shape, function and signaling observed under microgravity. Here we investigate the involvement of microfilament in mediating the effects of microgravity and BMP2 induction on Cbfa1 activity. For this purpose we constructed a fluorescent reporter cell line (OSE-MG63) of Cbfa1 activity by stably transfecting MG63 cells with a reporter consisting of six tandem copies of OSE2 and a minimal mOG2 promoter upstream of enhanced green fluorescent protein (EGFP). The fluorescence intensity of OSE-MG63 showed responsiveness to bone-related cytokines (IGF-I, vitamin D3 and BMP2) and presented an accordant tendency with alkaline phosphatase (ALP) activity. Using OSE-MG63 reporter fluorescence, we performed a semi-quantitative analysis of Cbfa1 activity after treatment with simulated microgravity, microfilament-disrupting agent (cytochalasin B, CB), microfilament-stabilizing agent (Jasplakinolide, JAS) or any combination thereof. In parallel, ALP activity, DNA binding activity of Cbfa1 to OSE2 (ChIP), F-actin structure (immunofluorescence) and EGFP mRNA expression (RT-qPCR) were analyzed. Simulated microgravity inhibited Cbfa1 activity, affected the responsiveness of Cbfa1 to cytokine BMP2, and caused a thinning and dispersed distribution of microfilament. Under normal gravity, CB significantly attenuated BMP2 induction to Cbfa1 activity as well as DNA binding activity of Cbfa1 to OSE2. The addition of JAS reversed the inhibitory effects of microgravity on the responsiveness of Cbfa1 to BMP2. Our study demonstrates that disrupting the microfilament organization by CB or simulated microgravity attenuates the responsiveness of Cbfa1 to BMP2. A stabilization of the microfilament organization by JAS reverses this inhibition. Taken together, these results suggest that actin microfilament participates in BMP2's induction to Cbfa1 activity and that their disruption might be an important contributor to microgravity's inhibition on BMP2's osteogenic induction.

摘要

微重力会降低成骨细胞的活性,导致肌动蛋白微丝的破坏,并抑制成骨细胞对细胞因子的反应,但其中的机制仍不清楚。肌动蛋白细胞骨架此前曾被牵涉到细胞形状、功能和信号在微重力下的多种变化中。在这里,我们研究了微丝在介导微重力和 BMP2 诱导对 Cbfa1 活性的影响中的作用。为此,我们通过用包含六个串联的 OSE2 拷贝和增强型绿色荧光蛋白 (EGFP) 上游最小 mOG2 启动子的报告基因构建稳定转染 MG63 细胞的荧光报告细胞系 (OSE-MG63),来研究微丝在介导微重力和 BMP2 诱导对 Cbfa1 活性的影响。OSE-MG63 的荧光强度对骨相关细胞因子(IGF-I、维生素 D3 和 BMP2)有反应,并与碱性磷酸酶 (ALP) 活性呈现一致的趋势。使用 OSE-MG63 报告荧光,我们对模拟微重力、微丝破坏剂(细胞松弛素 B,CB)、微丝稳定剂( Jasplakinolide,JAS)或它们的任何组合处理后的 Cbfa1 活性进行了半定量分析。同时,还分析了 ALP 活性、Cbfa1 与 OSE2 的 DNA 结合活性 (ChIP)、肌动蛋白结构 (免疫荧光) 和 EGFP mRNA 表达 (RT-qPCR)。模拟微重力抑制了 Cbfa1 活性,影响了 Cbfa1 对细胞因子 BMP2 的反应,并导致微丝变薄和分散分布。在正常重力下,CB 显著减弱了 BMP2 诱导的 Cbfa1 活性以及 Cbfa1 与 OSE2 的 DNA 结合活性。JAS 的添加逆转了微重力对 Cbfa1 对 BMP2 反应的抑制作用。我们的研究表明,CB 或模拟微重力破坏微丝组织会减弱 Cbfa1 对 BMP2 的反应性。JAS 稳定微丝组织可逆转这种抑制作用。总之,这些结果表明,肌动蛋白微丝参与了 BMP2 诱导 Cbfa1 活性,而其破坏可能是微重力抑制 BMP2 成骨诱导的一个重要因素。

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