Hagen F S, Young E T
J Virol. 1978 Jun;26(3):783-92. doi: 10.1128/JVI.26.3.783-792.1978.
The size of lysozyme mRNA from T7-infected E. coli RNase III+ and RNase III- strains was analyzed by sucrose gradient sedimentation, dimethylsulfoxide (Me2SO) sucorse gradient sedimentation, and preparative gel electrophoresis. Each technique revealed a similar size distribution of multiple lysozyme mRNA's. Analysis by preparative gel electrophoresis of RNA extracted after infection of Escherichia coli Bst (RNase III+) separated lysozyme mRNA into six peaks of activity ranging in size from 0.2 x 10(6) to 1.9 x 10(6) daltons. Four well-resolved major peaks of activity were detected, having apparent molecular weights of approximately 0.61 x 10(6), 0.76 x 10(6), 0.92 x 10(6), and 1.3 x 10(6). A broad band of activity, with a molecular weight range from 0.2 x 10(6) to 0.37 x 10(6), was also present, and a sixth peak of activity was sometimes observed that migrates with a mobility corresponding to a molecular weight of 1.9 x 10(6). Judging from their molecular weight as estimated by electrophoresis, most, if not all, of the lysozyme mRNA's were polycistronic. The RNA extracted after infection of an RNase III- host contained a more heterogeneous collection of lysozyme mRNA's. In addition to lysozyme mRNA activity on RNAs with molecular weights between 0.2 x 10(6) and 1.9 x 10(6), RNA species with molecular weights estimated at 4 x 10(6) to 5 x 10(6) were also detected. The data indicate that RNase III processes at least some of the primary lysozyme transcripts. The multiple lysozyme mRNA's represent discrete RNA species rather than aggregates because analysis of the size of lysozyme mRNA under completely denaturing conditions, in Me2SO, produced a similar size distribution of lysozyme mRNAs. Also, treatment of RNA with 90% Me2SO, which separates the strands of a completely double-stranded RNA, did not significantly alter the electrophoretic mobility of the lysozyme mRNA.
通过蔗糖梯度沉降、二甲基亚砜(Me2SO)蔗糖梯度沉降和制备性凝胶电泳,分析了来自T7感染的大肠杆菌RNase III+和RNase III-菌株的溶菌酶mRNA的大小。每种技术都揭示了多种溶菌酶mRNA的相似大小分布。对大肠杆菌Bst(RNase III+)感染后提取的RNA进行制备性凝胶电泳分析,将溶菌酶mRNA分离为六个活性峰,大小范围从0.2×10⁶到1.9×10⁶道尔顿。检测到四个分辨率良好的主要活性峰,其表观分子量约为0.61×10⁶、0.76×10⁶、0.92×10⁶和1.3×10⁶。还存在一个分子量范围从0.2×10⁶到0.37×10⁶的宽活性带,有时还观察到第六个活性峰,其迁移率对应于分子量为1.9×10⁶。从通过电泳估计的分子量判断,大多数(如果不是全部)溶菌酶mRNA是多顺反子的。RNase III-宿主感染后提取的RNA包含更异质的溶菌酶mRNA集合。除了分子量在0.2×10⁶和1.9×10⁶之间的RNA上的溶菌酶mRNA活性外,还检测到分子量估计为4×10⁶到5×10⁶的RNA种类。数据表明RNase III加工了至少一些初级溶菌酶转录本。多种溶菌酶mRNA代表离散的RNA种类而不是聚集体,因为在完全变性条件下,在Me2SO中对溶菌酶mRNA大小的分析产生了相似的溶菌酶mRNA大小分布。此外,用90% Me₂SO处理RNA,该处理可分离完全双链RNA的链,但并未显著改变溶菌酶mRNA的电泳迁移率。