Boulnois G J, Wilkins B M
Mol Gen Genet. 1979 Oct 1;175(3):275-9. doi: 10.1007/BF00397227.
Synthesis of DNA complementary to the transferred strand of an IncI alpha plasmid has been shown previously to require DNA polymerase III. The possible involvement of the two defined priming proteins of Escherichia coli K12, RNA polymerase and primase, in initiating this conjugal DNA synthesis had been examined. Primase was inactivated using temperature-sensitive dnaG3 mutants and RNA polymerase was inhibited using rifampicin. When these two proteins were simultaneously inactivated in both parental strains, the average recipient synthesised at least one single-stranded equivalent of R144drd-3 before the rifampicin-treated donors lost the ability to transmit DNA. It is proposed that the product of a plasmid transfer gene is responsible for initiating this DNA synthesis in recipients. The results imply that this protein is supplied by the donors.
先前已表明,合成与IncIα质粒转移链互补的DNA需要DNA聚合酶III。人们已经研究了大肠杆菌K12的两种已确定的引发蛋白RNA聚合酶和引发酶在启动这种接合DNA合成过程中可能发挥的作用。利用温度敏感型dnaG3突变体使引发酶失活,并使用利福平抑制RNA聚合酶。当在两个亲本菌株中同时使这两种蛋白失活时,在经利福平处理的供体失去传递DNA的能力之前,平均受体合成了至少一个单链当量的R144drd - 3。有人提出,质粒转移基因的产物负责在受体中启动这种DNA合成。结果表明,这种蛋白是由供体提供的。