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来自假单胞菌BAL-31的依赖DNA的RNA聚合酶。II. 噬菌体PM2 DNA的同种异型形式的转录

DNA-dependent RNA polymerase from Pseudomonas BAL-31. II. Transcription of the allomorphic forms of bacteriophage PM2 DNA.

作者信息

Zimmer S G, Millette R L

出版信息

Biochemistry. 1975 Jan 28;14(2):300-7. doi: 10.1021/bi00673a016.

Abstract

Transcription of the supercoiled form (I) and the relaxed circular form (II) of bacteriophage PM2 DNA was studied utilizing the DNA-dependent RNA polymerase from its host, Pseudomonas BAL-31. Transcription of both templates is continuous for up to 2 hr, but proceeds at a two-fold higher rate on I than on II. This difference is mainly due to a 2.2-fold higher rate of chain initiation on I. When rifampicin (Rif) is added ater 10 min of synthesis, (1) transcription of II ceases by 30 min with a maximum product length of 7000 nucleotides (number average) being produced; (2) transcription of I continues with little rate reduction and with the product reaching 16,000 nucleotides (number average) by 2 hr. Sucrose gradient analysis shows that the product of II achieves maximum size 20 min after Rif addition and sediments in three peaks of 24, 33, and 39 S (approximately one-third, two-thirds, and one genome lengths). The product of I has a heterogeneous distribution and grows continuously with a large fraction reacting greater than 3 genome lengths by 90 min. The same differences in synthesis kinetics, Rif inhibition, and product size distribution are observed when I and II are transcribed by Escherichia coli RNA polymerase. These experiments show that (i) PM2 form I DNA is transcribed mainly by a process of continuous chain elongation, with little chain termination occurring; (ii) PM2 form II is transcribed by a process of continuous chain initiation, elongation, and termination of yield discrete products. Thus, the tertiary structure of circular DNA influences chain termination by RNA polymerase.

摘要

利用噬菌体PM2 DNA的宿主——假单胞菌BAL - 31的依赖DNA的RNA聚合酶,对噬菌体PM2 DNA的超螺旋形式(I)和松弛环状形式(II)的转录进行了研究。两种模板的转录可持续长达2小时,但在I上的转录速率比在II上高两倍。这种差异主要是由于I上的链起始速率高2.2倍。当在合成10分钟后加入利福平(Rif)时,(1)II的转录在30分钟时停止,产生的最大产物长度为7000个核苷酸(数均);(2)I的转录继续进行,速率几乎没有降低,到2小时时产物达到16000个核苷酸(数均)。蔗糖梯度分析表明,II的产物在加入Rif后20分钟达到最大尺寸,并沉降在24、33和39 S的三个峰中(分别约为三分之一、三分之二和一个基因组长度)。I的产物具有不均匀的分布,并且持续增长,到90分钟时,大部分产物的反应长度大于3个基因组长度。当用大肠杆菌RNA聚合酶转录I和II时,在合成动力学、Rif抑制和产物大小分布方面观察到相同的差异。这些实验表明:(i)PM2 I型DNA主要通过连续链延伸过程进行转录,很少发生链终止;(ii)PM2 II型通过连续链起始、延伸和终止的过程进行转录,产生离散的产物。因此,环状DNA的三级结构影响RNA聚合酶的链终止。

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