Department of Biology, University of Kentucky, Lexington, KY 40506, USA.
Comp Biochem Physiol B Biochem Mol Biol. 2012 Mar;161(3):219-25. doi: 10.1016/j.cbpb.2011.11.008. Epub 2011 Nov 28.
We have established a model system of hormone action, in an Sf9 cell transfection system, using defined enhancer motifs and natural core promoters of metamorphosis-associated genes. The DR1 enhancer, that is an established DNA binding site for the ecdysone receptor/ultraspiracle heterodimer, was necessary for transcriptional activation by 20-OH ecdysone. For this activated transcription, a natural sequence closely 5' to the TATA box is necessary. Cotreatment with juvenile hormone III strongly suppressed the steroid activation of transcription. However, in the absence of the sequence located closely 5' to the TATA box, cotreatment with juvenile hormone instead increased transcription over that occurring due to 20-hydroxy-ecdysone alone. This sensitivity to activation by cotreatment with juvenile hormone could be transferred to a related, but otherwise unresponsive, hexamerin core promoter simply by transferring to the unresponsive promoter the five base transcription start site (ACAGT) from the responsive hexamerin gene. These are the first reports that the direction of JH action on 20-OH ecdysone-activated transcription can be reversed by removal of a sequence at the core promoter, and that modulatory action of juvenile hormone can be transferred to a different gene by transferring the transcription start site motif.
我们已经在 Sf9 细胞转染系统中建立了激素作用的模型系统,使用了定义明确的增强子基序和与变态相关基因的天然核心启动子。DR1 增强子是蜕皮激素受体/超螺旋体异二聚体的一个已建立的 DNA 结合位点,对于 20-OH 蜕皮激素的转录激活是必需的。对于这种激活的转录,TATA 盒附近的天然序列是必需的。与保幼激素 III 共同处理强烈抑制了类固醇对转录的激活。然而,在缺乏位于 TATA 盒附近的序列的情况下,与保幼激素的共同处理反而增加了转录,而不是由于 20-羟基蜕皮激素单独引起的转录。这种对保幼激素共同处理的激活敏感性可以通过将响应性六肽基因的转录起始位点(ACAGT)从响应性六肽基因转移到非响应性启动子,简单地转移到相关但无反应性的六肽核心启动子,从而转移到不同的基因。这些是第一个报道指出,通过去除核心启动子中的序列,可以逆转 JH 对 20-OH 蜕皮激素激活转录的作用方向,并且可以通过转移转录起始位点基序将保幼激素的调节作用转移到不同的基因。