Brinkmeier M L, Gordon D F, Dowding J M, Saunders T L, Kendall S K, Sarapura V D, Wood W M, Ridgway E C, Camper S A
Department of Human Genetics, University of Michigan, Ann Arbor 48109-0638, USA.
Mol Endocrinol. 1998 May;12(5):622-33. doi: 10.1210/mend.12.5.0103.
The glycoprotein hormone alpha-subunit gene is expressed and differentially regulated in pituitary gonadotropes and thyrotropes. Previous gene expression studies suggested that cell specificity may be regulated by distinct DNA elements. We have identified an enhancer region between -4.6 and -3.7 kb that is critical for high level expression in both gonadotrope and thyrotrope cells of transgenic mice. Fusion of the enhancer to -341/+43 mouse alpha-subunit promoter results in appropriate pituitary cell specificity and transgene expression levels that are similar to levels observed with the intact -4.6 kb/+43 construct. Deletion of sequences between -341 and -297 resuited in a loss of high level expression and cell specificity, exhibited by ectopic transgene activation in GH-, ACTH-, and PRL-producing pituitary cells as well as in other peripheral tissues. Consistent with these results, transient cell transfection studies demonstrated that the enhancer stimulated activity of a -341/+43 alpha-promoter in both alphaTSH and alphaT3 cells, but it did not enhance alpha-promoter activity significantly in CV-1 cells. Removal of sequences between -341 and -297 allowed the enhancer to function in heterologous cells. Loss of high level expression and cell specificity may be due to loss of sequences required for binding of the LIM homeoproteins or the alpha-basal element 1. These data demonstrate that the enhancer requires participation by both proximal and distal sequences for high level expression and suggests that sequences from -341 to -297 are critical for restricting expression to the anterior pituitary.
糖蛋白激素α亚基基因在垂体促性腺细胞和促甲状腺细胞中表达并受到差异调节。先前的基因表达研究表明,细胞特异性可能由不同的DNA元件调控。我们已鉴定出一个位于-4.6至-3.7 kb之间的增强子区域,该区域对于转基因小鼠促性腺细胞和促甲状腺细胞中的高水平表达至关重要。将该增强子与-341 / +43小鼠α亚基启动子融合,可产生适当的垂体细胞特异性和转基因表达水平,这与完整的-4.6 kb / +43构建体所观察到的水平相似。删除-341至-297之间序列会导致高水平表达和细胞特异性丧失,表现为在产生生长激素(GH)、促肾上腺皮质激素(ACTH)和催乳素(PRL)的垂体细胞以及其他外周组织中出现异位转基因激活。与这些结果一致,瞬时细胞转染研究表明,该增强子在αTSH和αT3细胞中均能刺激-341 / +43α启动子的活性,但在CV-1细胞中并未显著增强α启动子的活性。去除-341至-297之间的序列使该增强子能在异源细胞中发挥作用。高水平表达和细胞特异性的丧失可能是由于LIM同源蛋白或α基础元件1结合所需序列的缺失。这些数据表明,该增强子需要近端和远端序列的共同参与才能实现高水平表达,并表明-341至-297之间的序列对于将表达限制在前叶垂体中至关重要。