Kiyama R, Oishi M
Institute of Molecular and Cellular Biosciences, The University of Tokyo, Bunkyo-ku, Japan.
Nucleic Acids Res. 1996 Nov 15;24(22):4577-83. doi: 10.1093/nar/24.22.4577.
Transcription of poly(dA) x poly(dT)-containing sequences was investigated in vitro using plasmids carrying a (dA)34 x (dT)34 tract in the coding region of the lacZ gene. The efficiency of transcription of the (dT)34 sequence on the transcribing strand by Escherichia coli RNA polymerase was substantially lower (approximately 60%) than that of the (dA)34 sequence or of the control lacZ gene. Analysis of the transcription process of the (dT)34 sequence by T3 RNA polymerase showed that the transcription was frequently arrested or terminated at the middle as well as immediately proximal of the (dA)34 x (dT)34 tract, and it occurred more prominently following accumulation of transcription products. This inhibition was strongly enhanced by the addition of the oligonucleotide (dT)34 or poly(U) to the reaction mixture, while (dA)34 and the duplex (dA)34 x (dT)34 suppressed the inhibition. A similar transcriptional inhibition was also observed in transcription mediated by T7 RNA polymerase and eukaryotic RNA polymerase II. We also demonstrated RNA x DNA complex formation of the (dA)34 x (dT)34 tract with poly(U), but not with poly(A). These findings strongly suggest that poly(dT)-containing template sequences interact and form a complex with its transcription products, possibly an RNA x DNA triplex, which blocks further transcription. This would explain the instability of the plasmids transcribing mRNAs with poly(U) but not poly(A) tracts and the underrepresentation of poly(U) but not poly(A) tracts in mRNAs.
利用在lacZ基因编码区携带(dA)34×(dT)34片段的质粒,在体外研究了含poly(dA)×poly(dT)序列的转录情况。大肠杆菌RNA聚合酶对转录链上(dT)34序列的转录效率明显低于(dA)34序列或对照lacZ基因(约低60%)。用T3 RNA聚合酶分析(dT)34序列的转录过程表明,转录经常在(dA)34×(dT)34片段的中部以及紧邻其上游处停滞或终止,并且在转录产物积累后这种情况更明显。向反应混合物中添加寡核苷酸(dT)34或poly(U)可强烈增强这种抑制作用,而(dA)34和双链(dA)34×(dT)34可抑制这种抑制作用。在T7 RNA聚合酶和真核RNA聚合酶II介导的转录中也观察到了类似的转录抑制现象。我们还证明了(dA)34×(dT)34片段与poly(U)而非poly(A)形成RNA×DNA复合物。这些发现有力地表明,含poly(dT)的模板序列与其转录产物相互作用并形成复合物,可能是一种RNA×DNA三链体,从而阻断进一步的转录。这可以解释转录含poly(U)而非poly(A)片段的mRNA的质粒的不稳定性以及mRNA中poly(U)而非poly(A)片段的低丰度。