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一种新型PPARγ2调节剂sLZIP在间充质干细胞分化过程中控制脂肪生成和成骨之间的平衡。

A novel PPARγ2 modulator sLZIP controls the balance between adipogenesis and osteogenesis during mesenchymal stem cell differentiation.

作者信息

Kim J, Ko J

机构信息

Division of Life Sciences, Korea University, Seoul 136-701, Korea.

出版信息

Cell Death Differ. 2014 Oct;21(10):1642-55. doi: 10.1038/cdd.2014.80. Epub 2014 Jun 20.

Abstract

Mesenchymal stem cells (MSCs), also known as multipotent stromal cells, are used in clinical trials. However, the use of MSCs for medical treatment of patients poses a potential problem due to the possibility of transdifferentiation into unwanted tissues. Disruption of the balance during MSC differentiation leads to obesity, skeletal fragility, and osteoporosis. Differentiation of MSCs into either adipocytes or osteoblasts is transcriptionally regulated by the two key transcription factors PPARγ2 and Runx2. PPARγ2 is highly expressed during adipocyte differentiation and regulates expression of genes involved in adipogenesis. Runx2 induces osteogenic gene expression and, thereby, increases osteoblast differentiation. Although transcriptional modulation of PPARγ2 has been investigated in adipogenesis, the underlying molecular mechanisms to control the balance between adipogenesis and osteogenesis in MSCs remain unclear. In this study, the role of sLZIP in regulation of PPARγ2 transcriptional activation was investigated along with sLZIP's involvement in differentiation of MSCs into adipocytes and osteoblasts. sLZIP interacts with PPARγ2 and functions as a corepressor of PPARγ2. sLZIP enhances formation of the PPARγ2 corepressor complex through specific interaction with HDAC3, resulting in suppression of PPARγ2 transcriptional activity. We found that sLZIP prevents expression of PPARγ2 target genes and adipocyte differentiation both in vitro and in vivo. sLZIP also upregulates Runx2 transcriptional activity via inhibition of PPARγ2 activity, and promotes osteoblast differentiation. sLZIP transgenic mice exhibited enhanced bone mass and density, compared with wild-type mice. These results indicate that sLZIP has a critical role in the regulation of osteogenesis and bone development. However, sLZIP does not affect chondrogenesis and osteoclastogenesis. We propose that sLZIP is a novel PPARγ2 modulator for control of the balance between adipogenesis and osteogenesis during MSC differentiation, and that sLZIP can be used as a therapeutic target molecule for treatment of obesity, osteodystrophy, and osteoporosis.

摘要

间充质干细胞(MSCs),也被称为多能基质细胞,正在用于临床试验。然而,由于MSCs有可能转分化为不需要的组织,将其用于患者的医学治疗存在潜在问题。MSCs分化过程中平衡的破坏会导致肥胖、骨骼脆弱和骨质疏松。MSCs向脂肪细胞或成骨细胞的分化受到两个关键转录因子PPARγ2和Runx2的转录调控。PPARγ2在脂肪细胞分化过程中高度表达,并调节参与脂肪生成的基因表达。Runx2诱导成骨基因表达,从而增加成骨细胞分化。尽管在脂肪生成过程中已经对PPARγ2的转录调节进行了研究,但控制MSCs中脂肪生成和成骨之间平衡的潜在分子机制仍不清楚。在本研究中,研究了sLZIP在调节PPARγ2转录激活中的作用以及sLZIP参与MSCs向脂肪细胞和成骨细胞的分化过程。sLZIP与PPARγ2相互作用,并作为PPARγ2的共抑制因子发挥作用。sLZIP通过与HDAC3的特异性相互作用增强PPARγ2共抑制因子复合物的形成,从而抑制PPARγ2的转录活性。我们发现sLZIP在体外和体内均能阻止PPARγ2靶基因的表达和脂肪细胞分化。sLZIP还通过抑制PPARγ2活性上调Runx2的转录活性,并促进成骨细胞分化。与野生型小鼠相比,sLZIP转基因小鼠表现出更高的骨量和骨密度。这些结果表明sLZIP在成骨和骨骼发育的调节中起关键作用。然而,sLZIP不影响软骨生成和破骨细胞生成。我们提出,sLZIP是一种新型的PPARγ2调节剂,用于控制MSCs分化过程中脂肪生成和成骨之间的平衡,并且sLZIP可作为治疗肥胖、骨营养不良和骨质疏松的治疗靶点分子。

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