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Sizes of bacteriophage T4 early mRNAs separated by preparative polyacrylamide gel electrophoresis and identified by in vitro translation and by hybridization to recombinant T4 plasmids.

机译:通过制备聚丙烯酰胺凝胶电泳分离噬菌体T4早期mRNA的大小并通过体外翻译和与重组T4质粒的杂交来鉴定。

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摘要

We determined the sized of specific T4 prereplicative nRNA's by preparative polyacrylamide gel electrophoresis, and we used the following two techniques to identify specific gene transcripts; cell-free protein synthesis accompanied by sodium dodecyl sulfate-polyacrylamide gel electrophoresis to distinguish T4 polypeptides and hybridization to recombinant plasmids containing T4 DNA of known genetic composition. In our first analysis, the use of nonsense and in-phase deletion mutants allowed unambiguous identification of the functional transcripts that encoded genes 32, rIIB, and rIIA. In addition, we identified the functional transcript that encoded genes 43, 45, 30, 39, and 52, the beta-glucosyl transferase gene, and the deletion 293 region. A single peak of mRNA activity that coded for gp43, gp39, gprIIA, beta-glucosyl transferase, and the polypeptide encoded in the deletion 293 region was present; the other polypeptides were encoded in multiple mRNA species, gp46 and gp32 were encoded by two mRNA's and gp52 and gprIIB were encoded by three nRNA's. By hybridizing fractionated, pulse-labeled early RNA to cloned restriction fragments of T4 DNA, we identified the same specific transcripts for genes 43, 52, and rIIB. In addition, a lower-molecular-weight RNA (presumably degraded nRNA) was present even in pulse-labeled RNA preparations. The distribution of pulse-labeled RNAs that hybridized to gene 39, gene 30, gene rIIA, gene 40 plus gene 41, and gene 42 plus the beta-glucosyl transferase gene indicated extensive degradation. We detected cotranscription of genes rIIA and rIIB by rehybridization of RNA first annealed to an rIIB plasmid and then eluted and annealed to an rIIA plasmid. The size distributions of normal and chloramphenicol-treated RNAs that hybridized to plasmids containing T4 immediate early gene 30, gene 39, gene 40 plus gene 41, and gene 42 plus the beta-glucosyl transferase gene were not significantly different.
机译:我们通过制备聚丙烯酰胺凝胶电泳确定了特定的T4复制前nRNA的大小,并使用以下两种技术来鉴定特定的基因转录本;无细胞蛋白质合成,伴随十二烷基硫酸钠-聚丙烯酰胺凝胶电泳以区分T4多肽,并与含有已知遗传组成的T4 DNA的重组质粒杂交。在我们的第一个分析中,使用无义和同相缺失突变体可以明确鉴定编码基因32,rIIB和rIIA的功能转录物。此外,我们确定了编码基因43、45、30、39和52,β-葡萄糖基转移酶基因以及缺失293区的功能转录本。存在编码gp43,gp39,gprIIA,β-葡萄糖基转移酶和缺失293区域编码的多肽的mRNA活性的单峰。其他多肽以多种mRNA编码,gp46和gp32由两个mRNA编码,而gp52和gprIIB由三个nRNA编码。通过将分离的,脉冲标记的早期RNA与T4 DNA的克隆限制性片段进行杂交,我们为基因43、52和rIIB鉴定了相同的特异性转录本。此外,即使在脉冲标记的RNA制剂中,也存在较低分子量的RNA(可能是降解的nRNA)。与基因39,基因30,基因rIIA,基因40加基因41和基因42加β-葡萄糖基转移酶基因杂交的脉冲标记RNA的分布表明其广泛降解。我们通过先杂交到rIIB质粒的RNA的再杂交检测到rIIA和rIIB基因的共转录,然后洗脱并退火到rIIA质粒。与包含T4立即早期基因30,基因39,基因40加基因41和基因42加β-葡萄糖基转移酶的质粒杂交的正常和氯霉素RNA的大小分布没有显着差异。

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