Wang X, Chinsky J M, Costeas P A, Price S R
Renal Division, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
Am J Physiol Cell Physiol. 2001 May;280(5):C1176-83. doi: 10.1152/ajpcell.2001.280.5.C1176.
Acidification or glucocorticoids increase the maximal activity and subunit mRNA levels of branched chain alpha-ketoacid dehydrogenase (BCKAD) in various cell types. We examined whether these stimuli increase transcription of BCKAD subunit genes by transfecting BCKAD subunit promoter-luciferase plasmids containing the mouse E2 or human E1alpha-subunit promoter into LLC-PK(1) cells, which do not express glucocorticoid receptors, or LLC-PK(1)-GR101 cells, which we have engineered to constitutively express the glucocorticoid receptor gene. Dexamethasone or acidification increased luciferase activity in LLC-PK(1)-GR101 cells transfected with the E2 or E1alpha-minigenes; acidification augmented luciferase activity in LLC-PK(1) cells transfected with these minigenes but dexamethasone did not. A pH-responsive element in the E2 subunit promoter was mapped to a region >4.0 kb upstream of the transcription start site. Dexamethasone concurrently stimulated E2 subunit promoter activity and reduced the binding of nuclear factor-kappaB (NF-kappaB) to a site in the E2 promoter. Thus acidification and glucocorticoids independently enhance BCKAD subunit gene expression, and the glucocorticoid response in the E2 subunit involves interference with NF-kappaB, which may act as a transrepressor.
酸化或糖皮质激素可提高多种细胞类型中支链α-酮酸脱氢酶(BCKAD)的最大活性和亚基mRNA水平。我们通过将含有小鼠E2或人E1α-亚基启动子的BCKAD亚基启动子-荧光素酶质粒转染到不表达糖皮质激素受体的LLC-PK(1)细胞或我们已构建成组成型表达糖皮质激素受体基因的LLC-PK(1)-GR101细胞中,来研究这些刺激是否会增加BCKAD亚基基因的转录。地塞米松或酸化可增加用E2或E1α-小基因转染的LLC-PK(1)-GR101细胞中的荧光素酶活性;酸化可增强用这些小基因转染的LLC-PK(1)细胞中的荧光素酶活性,但地塞米松则不能。E2亚基启动子中的一个pH反应元件被定位到转录起始位点上游>4.0 kb的区域。地塞米松同时刺激E2亚基启动子活性,并减少核因子κB(NF-κB)与E2启动子中一个位点的结合。因此,酸化和糖皮质激素可独立增强BCKAD亚基基因表达,并且E2亚基中的糖皮质激素反应涉及对NF-κB的干扰,NF-κB可能作为一种反式阻遏物起作用。