Gilmartin P M, Chua N H
Laboratory of Plant Molecular Biology, Rockefeller University, New York, New York 10021-6399.
Plant Cell. 1990 May;2(5):447-55. doi: 10.1105/tpc.2.5.447.
Dissection of the light-responsive element (LRE) located between -166 and -50 of rbcS-3A from pea has revealed critical spacing requirements between the two GT-1 binding sites for light-responsive transcription. An increase in spacing between the two sites by as little as 2 bp reduces dramatically the rbcS-3A transcript levels in vivo. Mutation of the 10 bp between the binding sites leads to slightly lower transcript levels, as do deletions of either 3 bp or 8 bp. Deletions of 5 bp or 7 bp from between the GT-1 binding sites do not affect rbcS-3A transcript levels; however, a deletion of 10 bp virtually abolishes the activity of this element. These spacing changes within the light-responsive element similarly affect transcription of a divergently oriented and truncated nopaline synthase promoter. Most spacing changes between the two GT-1 binding sites, however, do not impair the binding of GT-1 to this element in vitro. Together with previous observations, these results suggest that the nuclear factor GT-1 may interact with the binding sites in either a productive or nonproductive manner and that GT-1 binding is necessary but not sufficient for light-responsive transcription. We also discuss our results in relation to the observed spacing of similar sequence elements present within other light-responsive promoters.
对豌豆rbcS - 3A基因 - 166至 - 50之间的光反应元件(LRE)进行剖析,揭示了两个GT - 1结合位点之间对于光反应转录的关键间距要求。两个位点之间的间距哪怕仅增加2个碱基对,都会显著降低体内rbcS - 3A转录本水平。结合位点之间10个碱基对的突变会导致转录本水平略有降低,3个碱基对或8个碱基对的缺失也会如此。从GT - 1结合位点之间缺失5个碱基对或7个碱基对不会影响rbcS - 3A转录本水平;然而,10个碱基对的缺失实际上会消除该元件的活性。光反应元件内的这些间距变化同样会影响反向排列且截短的胭脂碱合酶启动子的转录。不过,两个GT - 1结合位点之间的大多数间距变化不会损害GT - 1在体外与该元件的结合。与之前的观察结果一起,这些结果表明核因子GT - 1可能以有效或无效的方式与结合位点相互作用,并且GT - 1结合对于光反应转录是必要的,但并不充分。我们还将我们的结果与在其他光反应启动子中观察到的类似序列元件的间距进行了讨论。