Graves R A, Tontonoz P, Platt K A, Ross S R, Spiegelman B M
Dana-Farber Cancer Institute Boston, Massachusetts 02115.
J Cell Biochem. 1992 Jul;49(3):219-24. doi: 10.1002/jcb.240490303.
The molecular basis for adipose-specific gene expression is not known. To approach the problem of adipocyte gene expression, we have analyzed in detail the capacity of the 5'-flanking region of the adipocyte P2 (aP2) gene to direct cell-type specific gene expression. Although the proximal promoter containing AP-1 and C/EBP binding sites is capable of directing differentiation-dependent gene expression in cultured adipocytes, these constructs are essentially inactive in the tissues of transgenic mice. We found that -5.4 kb of the 5'-flanking region were required to direct heterologous gene (chloramphenicol acetyl transferase; CAT) expression to the adipose tissue of transgenic mice. By deletion analysis, we identified a 520 bp enhancer at -5.4 kb of the aP2 gene. We show that this enhancer can direct high levels of gene expression specifically to the adipose tissue of transgenic mice. This enhancer also functions in a differentiation-dependent manner in cultured adipocytes and cannot be transactivated in preadipocytes by C/EBP. Molecular analysis indicates that several cis- and trans- acting acting elements, though not C/EBP, contribute to the specificity and potency of this enhancer.
脂肪特异性基因表达的分子基础尚不清楚。为了解决脂肪细胞基因表达的问题,我们详细分析了脂肪细胞P2(aP2)基因5'侧翼区指导细胞类型特异性基因表达的能力。虽然含有AP-1和C/EBP结合位点的近端启动子能够在培养的脂肪细胞中指导依赖分化的基因表达,但这些构建体在转基因小鼠组织中基本无活性。我们发现,5'侧翼区的-5.4 kb对于将异源基因(氯霉素乙酰转移酶;CAT)表达导向转基因小鼠的脂肪组织是必需的。通过缺失分析,我们在aP2基因的-5.4 kb处鉴定出一个520 bp的增强子。我们表明,该增强子可以特异性地将高水平基因表达导向转基因小鼠的脂肪组织。该增强子在培养的脂肪细胞中也以依赖分化的方式发挥作用,并且不能被C/EBP在前脂肪细胞中反式激活。分子分析表明,几个顺式和反式作用元件,尽管不是C/EBP,对该增强子的特异性和效力有贡献。