Bageshwar U K, Raina R, Choudhury N R, Das H K
Department of Biological Chemistry, Weizmann Institute of Science, Rehovot, Israel.
Can J Microbiol. 1998 May;44(5):405-15.
BAL-31 deletion products of the DNA fragment containing the vnfH promoter and upstream region, when cloned in a transcriptional fusion vector and analyzed for vnfH expression in Azotobacter vinelandii, revealed that the upstream activator sequence of the vnfH promoter lies about 140 nucleotides upstream of the promoter. Subsequent substitution and deletion analysis by oligonucleotide-directed mutagenesis in the upstream region of the vnfH promoter showed that sequences 5'-GTACCATGCGGAAC-3' and 5'-GTACCTGCGGGTAC-3', located 170 and 140 nucleotides upstream of the vnfH promoter, respectively, are both required for vnfH expression. Addition of four nucleotides in the intervening sequence between the vnfH promoter and the putative VnfA (analog of NifA of the conventional molybdenum-dependent nitrogen-fixation pathway) binding site resulted in a drastic reduction of expression from the vnfH promoter in Azotobacter vinelandii, whereas addition of 10 nucleotides in the intervening sequence did not affect the expression. Therefore, the face of the helix-dependent contact appeared to be important. DNA bending seemed to play a crucial role in expression from vnfH promoter. The intervening sequence exhibited characteristics of sequence-dependent intrinsically curved DNA, as shown by anomalous low gel mobility with polyacrylamide gel electrophoresis, electron microscopy, and computer simulated curvature analysis. Distamycin at very low concentrations significantly reduced the anomaly in electrophoretic mobility of the intervening DNA sequence.
当包含vnfH启动子和上游区域的DNA片段的BAL - 31缺失产物克隆到转录融合载体中,并在棕色固氮菌中分析vnfH表达时,发现vnfH启动子的上游激活序列位于启动子上游约140个核苷酸处。随后通过寡核苷酸定向诱变对vnfH启动子上游区域进行取代和缺失分析表明,分别位于vnfH启动子上游170和140个核苷酸处的序列5'-GTACCATGCGGAAC-3'和5'-GTACCTGCGGGTAC-3'对于vnfH表达都是必需的。在vnfH启动子与假定的VnfA(传统钼依赖性固氮途径中NifA的类似物)结合位点之间的间隔序列中添加四个核苷酸,导致棕色固氮菌中vnfH启动子的表达急剧降低,而在间隔序列中添加10个核苷酸则不影响表达。因此,螺旋依赖性接触的表面似乎很重要。DNA弯曲似乎在vnfH启动子的表达中起关键作用。如聚丙烯酰胺凝胶电泳、电子显微镜和计算机模拟曲率分析显示的异常低凝胶迁移率所示,间隔序列表现出序列依赖性固有弯曲DNA的特征。极低浓度的偏端霉素显著降低了间隔DNA序列电泳迁移率的异常。