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An approach to gene-specific transcription inhibition using oligonucleotides complementary to the template strand of the open complex

机译:一种使用与开放复合物模板链互补的寡核苷酸进行基因特异性转录抑制的方法

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摘要

The single-stranded region of DNA within the open complex of transcriptionally active genes provides a unique target for the design of gene-specific transcription inhibitors. Using the Escherichia coli lac UV5 and trp EDCBA promoters as in vitro models of open complex formation, we have identified the sites inside these transcription bubbles that are accessible for hybridization by short, nuclease-resistant, nonextendible oligoribonucleotides (ORNs). Binding of ORNs inside the open complex was determined by linking the chemical nuclease bis(1,10-phenanthroline) cuprous chelate [(OP)2Cu+] to the ORN and demonstrating template-specific DNA scission. In addition, these experiments were supported by in vitro transcription inhibition. We find that the most effective inhibitors are 5 nt long and have sequences that are complementary to the DNA template strand in the region near the transcription start site. The ORNs bind to the DNA template strand, forming an antiparallel heteroduplex inside the open complex. In this system, RNA polymerase is essential not only to melt the duplex DNA but also to facilitate hybridization of the incoming ORN. This paradigm for gene-specific inactivation relies on the base complementarity of the ORN and the catalytic activity and sequence specificity of RNA polymerase for the site- and sequence-specific recognition and inhibition of transcriptionally active DNA.
机译:转录活性基因开放复合物中DNA的单链区为基因特异性转录抑制剂的设计提供了独特的靶标。使用大肠杆菌lac UV5和trp EDCBA启动子作为开放复合物形成的体外模型,我们鉴定了这些转录气泡中的位点,这些位点可通过短的,耐核酸酶的,不可延伸的寡核糖核苷酸(ORNs)进行杂交。通过将化学核酸酶双(1,10-菲咯啉)亚铜螯合物[(OP)2Cu +]与ORN连接并证明模板特异性DNA断裂来确定开放复合物中ORN的结合。另外,这些实验得到体外转录抑制的支持。我们发现最有效的抑制剂长5 nt,并具有与转录起始位点附近区域DNA模板链互补的序列。 ORN与DNA模板链结合,在开放复合物中形成反平行的异源双链。在该系统中,RNA聚合酶不仅对融化双链DNA至关重要,而且对促进传入ORN的杂交也至关重要。基因特异性失活的这种范例依赖于ORN的碱基互补性以及RNA聚合酶对位点和序列特异性识别和抑制转录活性DNA的催化活性和序列特异性。

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