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来自假单胞菌BAL-31的依赖DNA的RNA聚合酶。I. 酶的纯化及性质

DNA-dependent RNA polymerase from Pseudomonas BAL-31. I. Purification and properties of the enzyme.

作者信息

Zimmer S G, Millette R L

出版信息

Biochemistry. 1975 Jan 28;14(2):290-9. doi: 10.1021/bi00673a015.

Abstract

The DNA-dependent RNA polymerase from Pseudomonas BAL-31, the host for bacteriophage PM2, has been purified 154-fold using differential centrifugation, chromatography on DEAE-cellulose, ammonium sulfate precipitation, and sucrose gradient centrifugations at low and high ionic strength. The resulting enzyme is free of enzyme activities which could interfere with transcription studies and is greater than 85% pure as judged by polyacrylamide gel electrophoresis. Like other bacterial RNA polymerases, its subunit structure is beta'beta sigma alpha2. From gel electrophoresis the beta', beta, and alpha subunits have approximately the same molecular weights as those from Escherichia coli, whereas the sigma subunit is 5% larger (89,000 vs. 85,000). A summation of the subunits yields a molecular weight of 485,000 for the holoenzyme. Like other bacterial RNA polymerases, it sediments as a monomer (15 S) at low ionic strength (0.065) and as a dimer (22 S) at high ionic strength (0.75). Its activity is stimulated three-fold by monovalent cations (K+,NH4+, NA+) with additional stimulation provided by divalent cations (Mg2plus, Mn2plus). The transcription of phage PM2 form I (supercoiled) DNA has an ionic strength optimum of 0.26 for continuous long-term synthesis, and over an ionic strength range of 0.09-0.46 "plateau-type" kinetics are not observed. The sigma subunit is required for optimal PM2 transcription. The enzyme is sensitive to the same inhibitors of transcription as the RNA polymerase from E. coli, it has a temperature optimum of 28 degrees, and it is 50% inactivated by heating 10 min at 41 degrees. It has template preference similar to E. coli polymerase and shows little preference for homologous templates. With various DNAs the order of template activities is T7 greater than PM2 I congruent to T4 greater than PM2 II (relaxed circular form) greater than lambda-c greater than calf thymus greater than BAL-31 DNA. Phage PM2 form I DNA is transcribed at a twofold greater rate than PM2 form II DNA by this enzyme.

摘要

来自噬菌体PM2宿主——假单胞菌BAL - 31的依赖DNA的RNA聚合酶,通过差速离心、DEAE - 纤维素柱层析、硫酸铵沉淀以及在低离子强度和高离子强度下的蔗糖梯度离心进行了154倍的纯化。所得酶没有可能干扰转录研究的酶活性,通过聚丙烯酰胺凝胶电泳判断其纯度大于85%。与其他细菌RNA聚合酶一样,其亚基结构为β'βσα₂。从凝胶电泳结果来看,β'、β和α亚基的分子量与大肠杆菌的大致相同,而σ亚基大5%(89,000对85,000)。亚基总和得出全酶分子量为485,000。与其他细菌RNA聚合酶一样,它在低离子强度(0.065)下以单体(15S)形式沉降,在高离子强度(0.75)下以二聚体(22S)形式沉降。其活性受到单价阳离子(K⁺、NH₄⁺、Na⁺)三倍的刺激,二价阳离子(Mg²⁺、Mn²⁺)提供额外刺激。噬菌体PM2 I型(超螺旋)DNA的转录在连续长期合成时离子强度最佳值为0.26,在0.09 - 0.46的离子强度范围内未观察到“平台型”动力学。最佳PM2转录需要σ亚基。该酶对与大肠杆菌RNA聚合酶相同的转录抑制剂敏感,其最适温度为28℃,在41℃加热10分钟会使其50%失活。它具有与大肠杆菌聚合酶相似的模板偏好,对同源模板几乎没有偏好。对于各种DNA,模板活性顺序为T7>PM2 I≅T4>PM2 II(松弛环状形式)>λ - c>小牛胸腺>BAL - 31 DNA。该酶转录噬菌体PM2 I型DNA的速率比PM2 II型DNA快两倍。

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