Becker N A, Maher L J
Department of Biochemistry and Molecular Biology, Mayo Foundation, 200 First Street S.W., Rochester, MN 55905, USA.
Nucleic Acids Res. 1998 Apr 15;26(8):1951-8. doi: 10.1093/nar/26.8.1951.
A 128 base pair long homopurine/homopyrimidine (R/Y) element is located approximately 1.2 kb upstream of the transcription start point of the mouse metallothionein-I ( MT-I ) gene. We present a detailed in vitro structural characterization of the MT-I R/Y sequence as determined by enzymatic and chemical probes. An approximately 190 bp fragment containing the MT-I R/Y sequence was subcloned into a recombinant vector. Low resolution analysis with S1 nuclease indicates that DNA in this region was unpaired in supercoiled plasmids treated at low pH. High resolution mapping with chemical probes selective for non-B DNA structures provides evidence that the MT-I R/Y sequence adopts one or more H-DNA structures. We also investigated this sequence to determine if it can influence transcriptional regulation. Promoter/reporter constructs were prepared in which the MT-I R/Y sequence was positioned in either orientation upstream of either the MT-I or HSV-TK promoters. Promoter/reporter activities were evaluated by transient transfection assays using mouse NIH3T3 cells. The MT-I R/Y sequence displayed no detectable activity as a cis -acting transcriptional regulatory element. These results demonstrate that although the MT-I R/Y sequence is able to adopt a non-B DNA structure under certain in vitro conditions, there is no evidence that this sequence plays a significant role in transcriptional regulation.
一个128个碱基对长的同嘌呤/同嘧啶(R/Y)元件位于小鼠金属硫蛋白-I(MT-I)基因转录起始点上游约1.2 kb处。我们展示了通过酶促和化学探针确定的MT-I R/Y序列的详细体外结构特征。将包含MT-I R/Y序列的约190 bp片段亚克隆到重组载体中。用S1核酸酶进行的低分辨率分析表明,在低pH处理的超螺旋质粒中,该区域的DNA未配对。用对非B型DNA结构具有选择性的化学探针进行的高分辨率作图提供了证据,表明MT-I R/Y序列采用一种或多种H-DNA结构。我们还研究了该序列,以确定它是否能影响转录调控。制备了启动子/报告基因构建体,其中MT-I R/Y序列以任何一种方向位于MT-I或HSV-TK启动子的上游。使用小鼠NIH3T3细胞通过瞬时转染试验评估启动子/报告基因活性。MT-I R/Y序列作为顺式作用转录调节元件未显示出可检测到的活性。这些结果表明,尽管MT-I R/Y序列在某些体外条件下能够采用非B型DNA结构,但没有证据表明该序列在转录调控中起重要作用。