Berlin V, Yanofsky C
J Biol Chem. 1983 Feb 10;258(3):1714-9.
We studied release of trp leader RNA and trp template DNA from RNA polymerase during transcription termination at the attenuator of the trp operon of Escherichia coli. Preliminary evidence had suggested that a stable ternary complex was formed at the trp attentuator. We observed that the complexes between RNA polymerase and trp leader RNA and the DNA template produced during transcription were labile at high salt concentrations and were undetectable when transcription was performed in the presence of heparin. These characteristics are atypical of the stable transcription termination complexes described by others (Richardson, J. P., and Conaway, R. (1980) Biochemistry 19, 4293-4299; Shigesada, K., and Wu, C. (1980) Nucleic Acids Res. 8, 3355-3369). We successfully reconstituted polymerase-trp leader RNA complexes in simple mixing experiments; these and other studies indicated that it is core polymerase that binds the leader transcript and the DNA template. In agreement with this conclusion, it was observed that sigma factor inhibited binding of RNA polymerase to the trp leader transcript and the DNA template and displaced leader RNA from RNA polymerase during transcription. It seems likely that small amounts of core polymerase present in the holoenzyme preparation, or generated during transcription, are responsible for the nonspecific binding of RNA transcript and DNA template. Our findings, therefore, suggest that the transcription termination event at the trp attenuator normally involves spontaneous dissociation of polymerase, template, and RNA transcript.
我们研究了在大肠杆菌色氨酸操纵子衰减子处转录终止期间,色氨酸前导RNA和色氨酸模板DNA从RNA聚合酶上的释放情况。初步证据表明,在色氨酸衰减子处形成了稳定的三元复合物。我们观察到,转录过程中RNA聚合酶与色氨酸前导RNA和DNA模板之间形成的复合物在高盐浓度下不稳定,并且在肝素存在下进行转录时无法检测到。这些特性与其他人描述的稳定转录终止复合物不同(Richardson, J. P., and Conaway, R. (1980) Biochemistry 19, 4293 - 4299; Shigesada, K., and Wu, C. (1980) Nucleic Acids Res. 8, 3355 - 3369)。我们在简单的混合实验中成功地重构了聚合酶 - 色氨酸前导RNA复合物;这些以及其他研究表明,是核心聚合酶结合前导转录本和DNA模板。与这一结论一致的是,观察到σ因子在转录过程中抑制RNA聚合酶与色氨酸前导转录本和DNA模板的结合,并将前导RNA从RNA聚合酶上置换下来。全酶制剂中存在的少量核心聚合酶,或者转录过程中产生的核心聚合酶,似乎是RNA转录本和DNA模板非特异性结合的原因。因此,我们的研究结果表明,色氨酸衰减子处的转录终止事件通常涉及聚合酶、模板和RNA转录本的自发解离。