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重组大肠杆菌核糖核酸酶III的表达、纯化及性质

Expression, purification and properties of recombinant E. coli ribonuclease III.

作者信息

Srivastava N, Srivastava R A

机构信息

Department of Internal Medicine, Washington University School of Medicine, Saint Louis, MO 63110, USA.

出版信息

Biochem Mol Biol Int. 1996 May;39(1):171-80. doi: 10.1080/15216549600201171.

Abstract

Cloned RNase III gene in a T7 RNA polymerase promoter system was expressed in Escherichia coli cells lacking endogenous RNase III, and the over-expressed recombinant RNase III was purified to homogeneity using ion exchange, exclusion and affinity column chromatography. The overexpressed RNase III was found to separate with the membrane fraction after sonication, which was solubilized, fractionated with (NH)2SO4 and the active fractions used for further purification. The properties of the purified recombinant RNase III were studied using the synthetic RNA substrate, 3[H]poly[A].poly[U], and the natural substrates, 7S and p10Sa RNAs, and compared with the partially purified RNase III from wild-type E. coli cells. The recombinant RNase III showed maximal activity at 37 degrees C and at a pH range of 6.9 to 7.4, which was similar to the RNase III purified from the wild-type cells. Recombinant RNase III efficiently hydrolyzed 3[H].poly[A].poly[U] in the presence of Mg2+. However, the recombinant RNase III cleaved natural RNA substrates efficiently and accurately in the presence of Mn2+. A concentration of Mn2+ ranging from 150 to 300 microM was found to be optimal; concentrations higher than 0.5 mM were inhibitory. Other divalent cations did not support RNase III activity. Monovalent cations, Na+, K+ and NH4+ at 20 mM were equally effective in stimulating RNase III activity although they were not absolutely required for the activity. The thermal stability of the recombinant RNase III was examined at two temperatures, 37 degrees and 50 degrees C. Incubation of RNase III at 37 degrees C for 30 min did not affect activity, but it lost almost 50% of its activity when incubated at 50 degrees C for 30 min. Thus, the recombinant RNase III prefers Mn2+ for the cleavage of natural substrates and exhibits several properties similar to the wild-type RNase III.

摘要

在缺乏内源性核糖核酸酶III的大肠杆菌细胞中,表达了T7 RNA聚合酶启动子系统中的克隆核糖核酸酶III基因,并通过离子交换、排阻和亲和柱色谱法将过表达的重组核糖核酸酶III纯化至同质。发现过表达的核糖核酸酶III在超声处理后与膜部分分离,将其溶解,用硫酸铵分级分离,并将活性部分用于进一步纯化。使用合成RNA底物3[H]聚腺苷酸·聚尿苷酸以及天然底物7S和p10Sa RNA研究了纯化的重组核糖核酸酶III的特性,并与野生型大肠杆菌细胞中部分纯化的核糖核酸酶III进行了比较。重组核糖核酸酶III在37℃和pH 6.9至7.4范围内表现出最大活性,这与从野生型细胞中纯化的核糖核酸酶III相似。在Mg2+存在下,重组核糖核酸酶III能有效水解3[H]聚腺苷酸·聚尿苷酸。然而,重组核糖核酸酶III在Mn2+存在下能有效且准确地切割天然RNA底物。发现150至300 microM的Mn2+浓度是最佳的;高于0.5 mM的浓度具有抑制作用。其他二价阳离子不支持核糖核酸酶III的活性。20 mM的单价阳离子Na+、K+和NH4+在刺激核糖核酸酶III活性方面同样有效,尽管它们并非活性绝对必需的。在37℃和50℃两个温度下检测了重组核糖核酸酶III的热稳定性。核糖核酸酶III在37℃孵育30分钟不影响活性,但在50℃孵育30分钟时几乎丧失了50%的活性。因此,重组核糖核酸酶III在切割天然底物时更喜欢Mn2+,并表现出与野生型核糖核酸酶III相似的几种特性。

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