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增强的线粒体生物发生有助于 Wnt 诱导的 C3H10T1/2 细胞成骨细胞分化。

Enhanced mitochondrial biogenesis contributes to Wnt induced osteoblastic differentiation of C3H10T1/2 cells.

机构信息

Department of Internal Medicine, Seoul National University College of Medicine, Seoul, Korea.

出版信息

Bone. 2010 Jul;47(1):140-50. doi: 10.1016/j.bone.2010.04.593. Epub 2010 Apr 14.

Abstract

Mitochondria play a key role in cell physiology including cell differentiation and proliferation. We investigated the changes of mitochondrial biogenesis during Wnt-induced osteoblastic differentiation of murine mesenchymal C3H10T1/2 cells. Scanning electron microscopy demonstrated that activation of Wnt signaling by Wnt-3A conditioned medicum (CM) resulted in significant increase in the number of mitochondria in C3H10T1/2 cells. In addition, the induction of alkaline phosphatase (ALP) activities by Wnt-3A CM was accompanied by significant increase in mitochondrial mass (p<0.05), mitochondrial membrane potential (p<0.05), intracellular reactive oxygen species production (p<0.05), resting oxygen consumption rate (p<0.05), cellular ATP content (p< or =0.05) and mtDNA copy number (p<0.05) compared to the cells with control CM (L292-CM) treatment. Moreover, co-treatment with Dkk-1 or WIF-1, both of which are Wnt inhibitors, abrogated the Wnt-3A-induced ALP activities as well as mitochondrial biogenesis markers. Upregulation of mitochondrial biogenesis by overexpression of mitochondrial transcription factor A (Tfam) significantly enhanced Wnt-induced osteogenesis as measured by ALP activities. In contrast, inhibition of mitochondrial biogenesis by treatment with Zidovudine (AZT) resulted in significant inhibition of ALP activities. Finally, ALP activities in human osteosarcoma cell line devoid of mitochondrial DNA (rho(0) cells) was significantly suppressed both in basal and Wnt-3A stimulated state compared to those from mitochondria-intact cells (rho+ cells). As a mechanism for Wnt-mediated mitochondrial biogenesis, we found that Wnt increased the expression of PGC-1alpha, a critical molecules in mitochondrial biogenesis, through Erk and p38 MAPK pathway independent of beta-catenin signaling. We also found that increased mitochondrial biogenesis is in turn positively regulating TOPflash reporter activity as well as beta-catenin levels. To summarize, mitochodrial biogenesis is upregulated by Wnt signaling and this upregulation contributes to the osteoblastic differentiation of mouse mesenchymal C3H10T1/2 cells.

摘要

线粒体在细胞生理学中发挥着关键作用,包括细胞分化和增殖。我们研究了 Wnt 诱导的鼠间充质 C3H10T1/2 细胞成骨分化过程中线粒体生物发生的变化。扫描电子显微镜显示,Wnt-3A 条件培养基(CM)激活 Wnt 信号导致 C3H10T1/2 细胞中线粒体数量显著增加。此外,Wnt-3A CM 诱导碱性磷酸酶(ALP)活性的同时,线粒体质量(p<0.05)、线粒体膜电位(p<0.05)、细胞内活性氧产生(p<0.05)、静息氧消耗率(p<0.05)、细胞内 ATP 含量(p<0.05)和 mtDNA 拷贝数(p<0.05)均显著增加,与用对照 CM(L292-CM)处理的细胞相比。此外,用 Wnt 抑制剂 Dkk-1 或 WIF-1 共同处理可消除 Wnt-3A 诱导的 ALP 活性和线粒体生物发生标志物。线粒体转录因子 A(Tfam)的过表达上调可显著增强 Wnt 诱导的成骨作用,如 ALP 活性所示。相反,用 Zidovudine(AZT)抑制线粒体生物发生可显著抑制 ALP 活性。最后,与具有完整线粒体的细胞(rho+细胞)相比,缺乏线粒体 DNA 的人骨肉瘤细胞系(rho(0)细胞)的 ALP 活性在基础状态和 Wnt-3A 刺激状态下均显著降低。作为 Wnt 介导的线粒体生物发生的机制,我们发现 Wnt 通过 Erk 和 p38 MAPK 通路而非β-catenin 信号增加了线粒体生物发生的关键分子 PGC-1alpha 的表达。我们还发现,增加的线粒体生物发生反过来正向调节 TOPflash 报告基因活性和β-catenin 水平。总之,Wnt 信号上调了线粒体生物发生,这一上调促进了鼠间充质 C3H10T1/2 细胞的成骨分化。

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