Yang Liu, Clinton Jeremiah M, Blackburn Michael L, Zhang Qi, Zou Junhui, Zielinska-Kwiatkowska Anna, Tang Bor Luen, Chansky Howard A
Department of Orthopedics and Sports Medicine, University of Washington, Seattle, Washington 98195, USA.
J Biol Chem. 2008 Apr 18;283(16):10649-57. doi: 10.1074/jbc.M706795200. Epub 2008 Jan 23.
Insulin treatment of mouse ATDC5 chondroprogenitors induces these cells to differentiate into mature chondrocytes. To identify novel factors that are involved in this process, we carried out mutagenesis of ATDC5 cells through retroviral insertion and isolated two mutant clones incapable of differentiation. Inverse PCR analysis of these clones revealed that the retroviral DNA was inserted into the promoter region of the Rab23 gene, resulting in increased Rab23 expression. To investigate whether an elevated level of Rab23 protein led to inhibition of chondrogenic differentiation, we characterized ATDC5 cells that either overexpress endogenous Rab23 or stably express ectopic Rab23. Our results revealed that up-regulation of Rab23 can indeed inhibit chondrogenic differentiation with a concomitant down-regulation of matrix genes such as type II collagen and aggrecan. In addition, stable small interfering RNA knockdown of Rab23 also resulted in inhibition of chondrogenic differentiation as well as down-regulation of Sox9, a master regulator of chondrogenesis. Interestingly, Sox9 expression has recently been linked to Gli1, and we found that Rab23 knockdown decreased Gli1 expression in chondrocytes. Because the phenotypes of Rab23 mutations in mice and humans include defects in cartilage and bone development, our study suggests that Rab23 is involved in the control of Sox9 expression via Gli1 protein.
用胰岛素处理小鼠ATDC5软骨祖细胞可诱导这些细胞分化为成熟软骨细胞。为了鉴定参与这一过程的新因子,我们通过逆转录病毒插入对ATDC5细胞进行诱变,并分离出两个无法分化的突变克隆。对这些克隆进行反向PCR分析发现,逆转录病毒DNA插入到Rab23基因的启动子区域,导致Rab23表达增加。为了研究Rab23蛋白水平升高是否会抑制软骨形成分化,我们对过表达内源性Rab23或稳定表达异位Rab23的ATDC5细胞进行了表征。我们的结果表明,Rab23的上调确实可以抑制软骨形成分化,同时下调II型胶原蛋白和聚集蛋白聚糖等基质基因。此外,稳定的小干扰RNA敲低Rab23也导致软骨形成分化受到抑制,以及软骨形成的主要调节因子Sox9的下调。有趣的是,最近Sox9的表达与Gli1有关,我们发现Rab23敲低会降低软骨细胞中Gli1的表达。由于小鼠和人类中Rab23突变的表型包括软骨和骨骼发育缺陷,我们的研究表明Rab23通过Gli1蛋白参与Sox9表达的调控。