Zhang Ying, Lian Jane B, Stein Janet L, van Wijnen Andre J, Stein Gary S
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
J Cell Biochem. 2009 Oct 15;108(3):651-9. doi: 10.1002/jcb.22299.
Notch signaling plays a key role in osteoblast differentiation. A major transcriptional downstream regulator of this pathway is the helix-loop-helix (HLH) transcription factor Hairy/Enhancer of Split 1 (Hes-1). Here we investigated the function of Hes-1 in osteoblastic cells. Endogenous Hes-1 gene expression decreases during progression of bone cell phenotype development in MC3T3-E1 osteoblasts suggesting that it is a negative regulator of osteoblast differentiation. Forced expression of Hes-1 inhibits osteocalcin (OC) mRNA levels, and luciferase assays indicate that Hes-1 directly represses OC promoter activity. In vitro and in vivo protein/DNA interaction assays reveal that recombinant Hes-1 binds specifically to an E-box in the proximal promoter of the OC gene. Deletion of the Hes-1 WRPW domain (MHes-1) that recruits the co-repressor Groucho abrogates repression of OC promoter activity by Hes-1, but also blocks Hes-1 binding to the promoter. The latter result suggests that exogenous Hes-1 may be recruited to the OC promoter by both protein/DNA and protein/protein interactions. We conclude that the Notch-responsive Hes-1 protein is capable of repressing OC gene transcription in osteoblastic cells through an E-box in the proximal promoter. Hes-1 may contribute to osteoblast growth and differentiation by controlling basal bone-specific transcription directly through interactions with transcriptional regulators that are known to bind to the OC gene promoter.
Notch信号通路在成骨细胞分化中起关键作用。该信号通路的一个主要转录下游调节因子是螺旋-环-螺旋(HLH)转录因子Hairy/Enhancer of Split 1(Hes-1)。在此,我们研究了Hes-1在成骨细胞中的功能。在MC3T3-E1成骨细胞中,随着骨细胞表型发育进程,内源性Hes-1基因表达降低,这表明它是成骨细胞分化的负调节因子。Hes-1的强制表达抑制骨钙素(OC)mRNA水平,荧光素酶检测表明Hes-1直接抑制OC启动子活性。体外和体内蛋白质/DNA相互作用检测显示,重组Hes-1特异性结合OC基因近端启动子中的E盒。删除招募共抑制因子Groucho的Hes-1的WRPW结构域(MHes-1)可消除Hes-1对OC启动子活性的抑制作用,但也会阻止Hes-1与启动子的结合。后一结果表明,外源性Hes-1可能通过蛋白质/DNA和蛋白质/蛋白质相互作用被招募至OC启动子。我们得出结论,Notch反应性Hes-1蛋白能够通过近端启动子中的E盒抑制成骨细胞中OC基因的转录。Hes-1可能通过与已知结合OC基因启动子的转录调节因子相互作用,直接控制基础骨特异性转录,从而促进成骨细胞的生长和分化。