Li Qiliang, Fang Xiangdong, Han Hemei, Stamatoyannopoulos George
Division of Medical Genetics, School of Medicine, University of Washington, Seattle, WA 98195, USA.
Proc Natl Acad Sci U S A. 2004 May 25;101(21):8096-101. doi: 10.1073/pnas.0402594101. Epub 2004 May 17.
The human gamma-globin gene and its orthologous galago gamma-globin gene evolved from an ancestral epsilon-globin gene. In galago, expression of the gamma-gene remained restricted to the embryonic stage of development, whereas in humans, expression of the gamma-gene was recruited to the fetal stage. To localize the cis-elements responsible for this developmentally distinct regulation, we studied the expression patterns of the human gamma-gene driven by either the human or the galago gamma-promoters in transgenic mice. gamma-gene transcription driven by either promoter reached similar levels in embryonic erythropoiesis. In adult erythropoiesis the gamma-gene was silenced when controlled by the galago gamma-promoter, but it was expressed at a high level when it was linked to the human gamma-promoter. By a series of gamma-promoter truncations the sequences required for the down-regulation of the galago gamma-globin gene were localized to the minimal promoter. Furthermore, by interchanging the TATA, CCAAT, and CACCC elements between the human and galago minimal promoters we found that whereas each box made a developmentally distinctive contribution to gamma-globin gene expression, the CACCC box was largely responsible for the down-regulation of the gamma-gene in adult erythropoiesis.
人类γ-珠蛋白基因及其直系同源的婴猴γ-珠蛋白基因由一个祖先ε-珠蛋白基因进化而来。在婴猴中,γ-基因的表达仍局限于发育的胚胎阶段,而在人类中,γ-基因的表达则被招募到胎儿阶段。为了定位负责这种发育上不同调控的顺式元件,我们研究了在转基因小鼠中由人类或婴猴γ-启动子驱动的人类γ-基因的表达模式。由任何一个启动子驱动的γ-基因转录在胚胎红细胞生成中达到相似水平。在成体红细胞生成中,当由婴猴γ-启动子控制时,γ-基因沉默,但当它与人类γ-启动子相连时则高水平表达。通过一系列γ-启动子截短,婴猴γ-珠蛋白基因下调所需的序列被定位到最小启动子。此外,通过在人类和婴猴最小启动子之间互换TATA、CCAAT和CACCC元件,我们发现虽然每个框对γ-珠蛋白基因表达都有发育上独特的贡献,但CACCC框在很大程度上负责成体红细胞生成中γ-基因的下调。