colib和drd7分离成小细胞。

A Skorupska, Z Lorkiewicz
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引用次数: 0

摘要

将野生型质粒ColIb及其突变体drd7转移到大肠杆菌K12 P678-54中产生小细胞。drd7的育性功能在新寄主体内仍处于抑制状态。P678-54drd7以高频率(28.6%)传递质粒,并被噬菌体If1有效裂解。大量的3H-DNA从P67854Col+分离到小细胞依赖于质粒的存在。抑制质粒比野生型质粒更有效地分离成小细胞。ColIb的分离率为2%,而ColIbdrd7的分离率为8.4%。野生型质粒与去抑质粒分离频率的差异表明所研究的质粒的细胞膜附着位点不同。Mini-drd7能够以低频率(0.1%)将质粒转移到大肠杆菌中。携带两种质粒的微细胞均能合成RNA和蛋白质。RNA和蛋白质的合成是质粒特异性的,前体不被纳入没有质粒的小细胞中。利福平和氯霉素分别抑制小细胞中RNA和蛋白质的合成。3h -尿苷或14c -亮氨酸比ColIb更有效地结合到含有drd7的微型细胞中,可能是由于drd7在微型细胞中的分离效率很高。3H-RNA的聚丙烯酰胺凝胶电泳表明,微型细胞中的质粒能够编码4s的低分子RNA。在微细胞新生合成的RNA谱中,没有发现16或23号核糖体RNA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Segregation of Col Ib and drd7 into minicells.

The wild-type plasmid ColIb and its mutant drd7 derepressed in conjugation were transferred to Escherichia coli K12 P678-54 which produces minicells. Fertility functions of drd7 remained derepressed in the new host. P678-54drd7 transmitted the plasmid at a high frequency (28.6%) and it was effectively lysed by the phage If1. Significant amounts of 3H-DNA segregated from P67854Col+ into minicells dependent upon the presence of the plasmid. The depressed plasmid segregated more effectively into minicells than the wild-type plasmid. ColIb segregated into 2% whereas ColIbdrd7 into 8.4% of minicells. The difference in the frequency of segregation of the wild-type and the derepressed plasmid indicated different cell membrane attachment sites of each plasmid studied. Mini-drd7 were able to transfer the plasmid to E. coli Row at a low frequency (0.1%). Minicells carrying either of plasmid were capable to synthesize RNA and protein. RNA and protein synthesis were plasmid specific and the precursors were not incorporated into minicells without plasmids. Rifampin and chloramphenicol inhibited RNA and protein synthesis in minicells, respectively. The more effective incorporation of 3H-uridine or 14C-leucine into minicells harboring drd7 than ColIb resulted presumably from the high efficiency of the segregation of drd7 into minicells. Polyacrylamide gel electrophoresis of 3H-RNA has shown that plasmids in minicells were able to code low molecular RNA of 4s. No 16 or 23 ribosomal RNA was found in the profiles of de novo synthesized RNA in minicells.

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