Oskolkova O B, Kobets N S, Piruzian E S
Genetika. 1984 Apr;20(4):556-63.
The paper reports on the influence of polymerizing activity of DNA-polymerase I on different developmental stages of temperate bacteriophage Mu in Escherichia coli K-12 cells. This activity is shown to be necessary for optimization of phage Mu primary integration into cell chromosomes. The relative frequency of Mu integration into bacterial chromosomes is 5-6 times lower in polA cells than in isogenic polA+ control strains, the phage yield from cells being delayed during the phage infectious development, but not in the course of induction from the prophage state. Data have been obtained that show the process of phage Mu DNA integration into the plasmid pRP1 .2 and the process of Mu transposition from the cell chromosome into the plasmid to be independent of the polymerizing activity of DNA-polymerase I.
该论文报道了DNA聚合酶I的聚合活性对大肠杆菌K-12细胞中温和噬菌体Mu不同发育阶段的影响。结果表明,这种活性对于噬菌体Mu初次整合到细胞染色体的优化是必需的。在polA细胞中,Mu整合到细菌染色体中的相对频率比同基因的polA+对照菌株低5至6倍,在噬菌体感染发育过程中,细胞产生噬菌体的时间延迟,但从原噬菌体状态诱导时则不然。已获得的数据表明,噬菌体Mu DNA整合到质粒pRP1.2的过程以及Mu从细胞染色体转座到质粒的过程与DNA聚合酶I的聚合活性无关。