Rossert J A, Chen S S, Eberspaecher H, Smith C N, de Crombrugghe B
Department of Molecular Genetics, University of Texas, M. D. Anderson Cancer Center, Houston 77030, USA.
Proc Natl Acad Sci U S A. 1996 Feb 6;93(3):1027-31. doi: 10.1073/pnas.93.3.1027.
Based on our previous transgenic mice results, which strongly suggested that separate cell-specific cis-acting elements of the mouse pro-alpha 1(I) collagen promoter control the activity of the gene in different type I collagen-producing cells, we attempted to delineate a short segment in this promoter that could direct high-level expression selectively in osteoblasts. By generating transgenic mice harboring various fragments of the promoter, we identified a 117-bp segment (-1656 to -1540) that is a minimal sequence able to confer high-level expression of a lacZ reporter gene selectively in osteoblasts when cloned upstream of the proximal 220-bp pro-alpha 1(I) promoter. This 220-bp promoter by itself was inactive in transgenic mice and unable to direct osteoblast-specific expression. The 117-bp enhancer segment contained two sequences that appeared to have different functions. The A sequence (-1656 to -1628) was required to obtain expression of the lacZ gene in osteoblasts, whereas the C sequence (-1575 to -1540) was essential to obtain consistent and high-level expression of the lacZ gene in osteoblasts. Gel shift assays showed that the A sequence bound a nuclear protein present only in osteoblastic cells. A mutation in the A segment that abolished the binding of this osteoblast-specific protein also abolished lacZ expression in osteoblasts of transgenic mice.
基于我们之前对转基因小鼠的研究结果,这些结果强烈表明,小鼠原α1(I)型胶原启动子中不同的细胞特异性顺式作用元件控制着该基因在不同I型胶原产生细胞中的活性,我们试图在该启动子中描绘出一个短片段,该片段能够在成骨细胞中选择性地指导高水平表达。通过构建携带启动子不同片段的转基因小鼠,我们鉴定出一个117bp的片段(-1656至-1540),当克隆到近端220bp原α1(I)启动子上游时,它是一个能够在成骨细胞中选择性地赋予lacZ报告基因高水平表达的最小序列。这个220bp的启动子本身在转基因小鼠中无活性,无法指导成骨细胞特异性表达。117bp的增强子片段包含两个似乎具有不同功能的序列。A序列(-1656至-1628)是在成骨细胞中获得lacZ基因表达所必需的,而C序列(-1575至-1540)对于在成骨细胞中获得lacZ基因一致的高水平表达至关重要。凝胶迁移实验表明,A序列结合了仅存在于成骨细胞中的一种核蛋白。A片段中的一个突变消除了这种成骨细胞特异性蛋白的结合,也消除了转基因小鼠成骨细胞中的lacZ表达。