Kleppe R K, Kleppe K
J Bacteriol. 1976 Feb;125(2):435-43. doi: 10.1128/jb.125.2.435-443.1976.
Deoxyribonucleic acid (DNA)-dependent ribonucleic acid (RNA) polymerase (EC 2.7.7.6) from Acinetobacter calcoaceticus was purified to apparent homogeneity and its properties were compared with those of the Escherichia coli B enzyme. The molecular weights of the two native active enzymes as well as their alpha and beta subunits appeared to be similar. No subunit corresponding to that of sigma from E. coli was found, and furthermore no separation between the beta subunits could be detected by gel electrophoresis. A number of different DNAs were transcribed by the enzyme from A. calcoaceticus. Maximal RNA synthesis occurred at pH 8.7, 10 mM Mg2+, or 0.3 mM Mn2+ and at a total ionic strength of 0.1. Higher ionic strengths led to increasing inhibition of transcription and at mu = 0.4 complete inhibition was observed. The mechanism of inhibition of salt was not related to the initiation event as observed with T4 core RNA polymerase (R.Kleppe, 1975). In an attempt to understand the mechanism of inhibition by salt, the effect of ionic strength on the sedimentation properties of the enzyme was investigated. At low ionic strength, enzyme species with sedimentation coefficients, s20,w, of 5.8S, 12.4S, and 19.3S were present. In buffers with higher ionic strengths the relative amounts of the 12.4S species decreased. It is suggested, therefore, that the inhibition of activity at higher salt concentrations is caused by a decrease in concentration of the active enzyme species.
从醋酸钙不动杆菌中纯化出依赖脱氧核糖核酸(DNA)的核糖核酸(RNA)聚合酶(EC 2.7.7.6),使其达到表观均一性,并将其性质与大肠杆菌B酶的性质进行比较。两种天然活性酶及其α和β亚基的分子量似乎相似。未发现与大肠杆菌的σ亚基相对应的亚基,此外,通过凝胶电泳未检测到β亚基之间的分离。醋酸钙不动杆菌的酶可转录多种不同的DNA。最大RNA合成发生在pH 8.7、10 mM Mg2+或0.3 mM Mn2+以及总离子强度为0.1的条件下。较高的离子强度导致转录抑制增加,当μ = 0.4时观察到完全抑制。盐抑制的机制与T4核心RNA聚合酶(R.Kleppe,1975)所观察到的起始事件无关。为了理解盐抑制的机制,研究了离子强度对酶沉降性质的影响。在低离子强度下,存在沉降系数s20,w为5.8S、12.4S和19.3S的酶种类。在离子强度较高的缓冲液中,12.4S种类的相对含量降低。因此,有人认为在较高盐浓度下活性的抑制是由活性酶种类浓度的降低引起的。