Fenwick R G, Curtiss R
J Bacteriol. 1973 Dec;116(3):1224-35. doi: 10.1128/jb.116.3.1224-1235.1973.
Conjugal replication of R64-11 deoxyribonucleic acid (DNA) and the concomitant transfer of R64-11 DNA to DNA-deficient minicells are dependent upon processes that are inhibited by rifampin and chloramphenicol. The rifampin-sensitive product is not present in vegetatively growing cells and is needed to initiate both conjugal DNA replication in donor cells and DNA transfer to recipient minicells. If the rifampin-sensitive product is a ribonucleic acid (RNA) molecule (rather than RNA polymerase itself), our data indicate that this RNA species required for initiation of conjugal activity does not need to be translated into a protein product. The chloramphenicol-sensitive product(s) is present in vegetatively growing cells in sufficient quantity to permit most donor cells to carry out one round of plasmid conjugal replication and transfer. The initiation of second and subsequent rounds of conjugal replication and transfer are dependent on the synthesis of both the rifampin-sensitive and chloramphenicol-sensitive products. Our results demonstrate a correspondence between the amount of conjugal DNA replication in the donor and the amount of DNA transferred to recipient minicells under all conditions, and therefore suggest but do not prove that plasmid transfer is dependent on conjugal DNA replication. The results also add additional proof that R64-11 transfer to minicells is discontinuous. All of these results are discussed in regard to further refinements of old models for the mechanism of conjugal transfer as well as a more radical departure from current dogma.
R64-11脱氧核糖核酸(DNA)的接合复制以及R64-11 DNA向DNA缺陷型微小细胞的伴随转移依赖于受利福平和平氯霉素抑制的过程。利福平敏感产物不存在于营养生长的细胞中,是供体细胞中启动接合DNA复制以及DNA向受体微小细胞转移所必需的。如果利福平敏感产物是一种核糖核酸(RNA)分子(而非RNA聚合酶本身),我们的数据表明,启动接合活性所需的这种RNA种类无需翻译成蛋白质产物。氯霉素敏感产物在营养生长的细胞中大量存在,足以使大多数供体细胞进行一轮质粒接合复制和转移。第二轮及后续轮次的接合复制和转移的启动依赖于利福平敏感产物和氯霉素敏感产物的合成。我们的结果表明,在所有条件下,供体中接合DNA复制的量与转移到受体微小细胞中的DNA量之间存在对应关系,因此表明但未证明质粒转移依赖于接合DNA复制。结果还进一步证明R64-11向微小细胞的转移是不连续的。所有这些结果都结合接合转移机制旧模型的进一步完善以及与当前教条更彻底的背离进行了讨论。