Kim Jae-Sung, Ryoo Zae Young, Chun Jang-Soo
Department of Life Sciences, Research Center for Biomolecular Nanotechnology, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.
J Biol Chem. 2007 Oct 5;282(40):29359-67. doi: 10.1074/jbc.M700965200. Epub 2007 Jul 20.
To identify novel molecules regulating chondrogenesis and cartilage development, we screened a cartilage-specific expressed sequence tag data base. Cytokine-like 1 (Cytl1), a possible cytokine candidate with unknown function that was originally identified in bone marrow-derived CD34-positive cells, was selected for functional characterization. In view of the initial observation that Cytl1 is predominantly expressed in chondrocytes and cartilage, we investigated its possible role in chondrogenesis and hypertrophic maturation of chondrocytes. Cytl1 expression was very low in mesenchymal cells, dramatically increased during chondrogenesis, and decreased during hypertrophic maturation, both in vivo and in vitro. The role of Cytl1 in chondrogenesis and hypertrophic maturation was examined by treating chondrifying mesenchymal cells with exogenous Cytl1 or ectopic expression of Cytl1. Notably, exogenous Cytl1 caused chondrogenic differentiation of mouse limb bud mesenchymal cells during micromass culture. Lentivirus-mediated overexpression of Cytl1 additionally induced chondrogenic differentiation of mesenchymal cells. However, Cytl1 did not affect the hypertrophic maturation of chondrocytes. Cytl1 exerted its chondrogenic effect via stimulation of Sox9 transcriptional activity. In addition, Cytl1 caused expression of insulin-like growth factor 1, which has a capacity to induce chondrogenesis. Thus, our results collectively suggest that chondrocyte-specific Cytl1 regulates chondrogenesis as a novel autocrine factor, but not hypertrophic maturation of chondrocytes during cartilage development.
为了鉴定调控软骨形成和软骨发育的新分子,我们筛选了一个软骨特异性表达序列标签数据库。细胞因子样1(Cytl1)是一种功能未知的潜在细胞因子候选物,最初在骨髓来源的CD34阳性细胞中被鉴定出来,我们选择对其进行功能表征。鉴于最初观察到Cytl1主要在软骨细胞和软骨中表达,我们研究了它在软骨形成和软骨细胞肥大成熟过程中可能发挥的作用。在体内和体外,Cytl1在间充质细胞中的表达都非常低,在软骨形成过程中显著增加,而在肥大成熟过程中则下降。通过用外源性Cytl1处理软骨化间充质细胞或异位表达Cytl1,研究了Cytl1在软骨形成和肥大成熟中的作用。值得注意的是,在微团培养过程中,外源性Cytl1导致小鼠肢芽间充质细胞发生软骨分化。慢病毒介导的Cytl1过表达进一步诱导了间充质细胞的软骨分化。然而,Cytl1并不影响软骨细胞的肥大成熟。Cytl1通过刺激Sox9转录活性发挥其软骨形成作用。此外,Cytl1导致胰岛素样生长因子1的表达,胰岛素样生长因子1具有诱导软骨形成的能力。因此,我们的研究结果共同表明,软骨细胞特异性的Cytl1作为一种新的自分泌因子调节软骨形成,但不影响软骨发育过程中软骨细胞的肥大成熟。