HOXA10 通过直接激活骨调节基因和表型基因来控制成骨细胞生成。
HOXA10 controls osteoblastogenesis by directly activating bone regulatory and phenotypic genes.
作者信息
Hassan Mohammad Q, Tare Rahul, Lee Suk Hee, Mandeville Matthew, Weiner Brian, Montecino Martin, van Wijnen Andre J, Stein Janet L, Stein Gary S, Lian Jane B
机构信息
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, MA 01655-0106, USA.
出版信息
Mol Cell Biol. 2007 May;27(9):3337-52. doi: 10.1128/MCB.01544-06. Epub 2007 Feb 26.
HOXA10 is necessary for embryonic patterning of skeletal elements, but its function in bone formation beyond this early developmental stage is unknown. Here we show that HOXA10 contributes to osteogenic lineage determination through activation of Runx2 and directly regulates osteoblastic phenotypic genes. In response to bone morphogenic protein BMP2, Hoxa10 is rapidly induced and functions to activate the Runx2 transcription factor essential for bone formation. A functional element with the Hox core motif was characterized for the bone-related Runx2 P1 promoter. HOXA10 also activates other osteogenic genes, including the alkaline phosphatase, osteocalcin, and bone sialoprotein genes, and temporally associates with these target gene promoters during stages of osteoblast differentiation prior to the recruitment of RUNX2. Exogenous expression and small interfering RNA knockdown studies establish that HOXA10 mediates chromatin hyperacetylation and trimethyl histone K4 (H3K4) methylation of these genes, correlating to active transcription. HOXA10 therefore contributes to early expression of osteogenic genes through chromatin remodeling. Importantly, HOXA10 can induce osteoblast genes in Runx2 null cells, providing evidence for a direct role in mediating osteoblast differentiation independent of RUNX2. We propose that HOXA10 activates RUNX2 in mesenchymal cells, contributing to the onset of osteogenesis, and that HOXA10 subsequently supports bone formation by direct regulation of osteoblast phenotypic genes.
HOXA10对于骨骼元素的胚胎模式形成是必需的,但其在这一早期发育阶段之后的骨形成过程中的功能尚不清楚。在此,我们表明HOXA10通过激活Runx2促进成骨谱系的确定,并直接调节成骨细胞表型基因。响应骨形态发生蛋白BMP2,Hoxa10被快速诱导并发挥作用激活骨形成所必需的Runx2转录因子。针对与骨相关的Runx2 P1启动子,鉴定了一个具有Hox核心基序的功能元件。HOXA10还激活其他成骨基因,包括碱性磷酸酶、骨钙素和骨唾液蛋白基因,并在RUNX2募集之前的成骨细胞分化阶段与这些靶基因启动子在时间上相关联。外源表达和小干扰RNA敲低研究证实,HOXA10介导这些基因的染色质超乙酰化和组蛋白H3赖氨酸4(H3K4)三甲基化,这与活跃转录相关。因此,HOXA10通过染色质重塑促进成骨基因的早期表达。重要的是,HOXA10可以在Runx2基因缺失的细胞中诱导成骨细胞基因,这为其在介导独立于RUNX2的成骨细胞分化中发挥直接作用提供了证据。我们提出,HOXA10在间充质细胞中激活RUNX2,促进成骨作用的起始,并且HOXA10随后通过直接调节成骨细胞表型基因来支持骨形成。