Cho Young-Dan, Yoon Won-Joon, Woo Kyung-Mi, Baek Jeong-Hwa, Lee Gene, Cho Je-Yoel, Ryoo Hyun-Mo
Department of Cell and Developmental Biology, School of Dentistry and Dental Research Institute, BK21 Program, Seoul National University, Seoul 110-749, Korea.
J Biol Chem. 2009 Sep 11;284(37):25230-40. doi: 10.1074/jbc.M109.008391. Epub 2009 Jul 18.
Matrix extracellular phosphoglycoprotein (MEPE) is mainly expressed in mineralizing tissues, and its C-terminal proteolytic cleavage product is an acidic-serine-asparate-rich-MEPE-associated motif (ASARM) that is a strong regulator of body phosphate metabolism and mineralization. There is sufficient data supporting a role for MEPE protein function in mineralization, however, little is known about the regulation of MEPE gene expression. As bone morphogenetic protein-2 (BMP-2) is one of the most important signals for calvarial mineralization and MEPE expression is higher in mineralized tissues, we attempted to uncover a regulatory circuit between BMP-2 and MEPE expression. Mepe expression is very low in proliferating MC3T3-E1 cells, but is dramatically increased in the mineralization stage and is strongly stimulated by treatment with BMP-2, even in proliferating cells. Overexpression and knock-down experiments of Smads, Dlx5, and Runx2 indicated that they are indispensable mediators of BMP-2-induced Mepe expression. In contrast, Msx2 showed strong inhibition of Mepe transcription. PHEX is an enzyme that prevents the release of the ASARM motif, a mineralization inhibitor, from the MEPE molecule. Thus, the MEPE/PHEX ratio may be a good indicator of mineralization progression because we found that the mRNA ratio and protein levels were low when osteoblasts were actively differentiating to the mineralization stage and the ratio was high when the cells reached the mineralization stage when it is assumed that osteocytes may protect themselves and make a space to survive from the mineralized matrix by releasing the ASARM motif. Collectively, MEPE expression is bone cell-specific and induced by the BMP-2 signaling pathway. In addition, the MEPE/PHEX ratio of the cell could be a very important barometer indicating the progression of tissue mineralization.
基质细胞外磷酸糖蛋白(MEPE)主要在矿化组织中表达,其C末端蛋白水解切割产物是富含酸性丝氨酸天冬氨酸的MEPE相关基序(ASARM),是机体磷酸盐代谢和矿化的强调节剂。有足够的数据支持MEPE蛋白功能在矿化中的作用,然而,关于MEPE基因表达的调控知之甚少。由于骨形态发生蛋白-2(BMP-2)是颅骨矿化最重要的信号之一,且MEPE在矿化组织中的表达较高,我们试图揭示BMP-2与MEPE表达之间的调控回路。Mepe在增殖的MC3T3-E1细胞中表达非常低,但在矿化阶段显著增加,并且即使在增殖细胞中,也受到BMP-2处理的强烈刺激。对Smads、Dlx5和Runx2的过表达和敲低实验表明,它们是BMP-2诱导的Mepe表达不可或缺的介质。相反,Msx2对Mepe转录有强烈抑制作用。PHEX是一种阻止矿化抑制剂ASARM基序从MEPE分子中释放的酶。因此,MEPE/PHEX比值可能是矿化进程的良好指标,因为我们发现,当成骨细胞积极分化到矿化阶段时,mRNA比值和蛋白水平较低,而当细胞达到矿化阶段时,该比值较高,此时推测骨细胞可能通过释放ASARM基序来保护自身并在矿化基质中为生存创造空间。总的来说,MEPE表达具有骨细胞特异性,并由BMP-2信号通路诱导。此外,细胞的MEPE/PHEX比值可能是指示组织矿化进程的非常重要的晴雨表。