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通过groES和groEL基因扩增抑制大肠杆菌dnaA46突变

Suppression of the Escherichia coli dnaA46 mutation by amplification of the groES and groEL genes.

作者信息

Fayet O, Louarn J M, Georgopoulos C

出版信息

Mol Gen Genet. 1986 Mar;202(3):435-45. doi: 10.1007/BF00333274.

Abstract

A lambda hybrid phage (lambda Sda1), containing an 8.1 kb EcoRI DNA fragment from the Escherichia coli chromosome, was selected on the basis of its ability to suppress bacterial thermosensitivity caused by the dnaA46 mutation. We have shown that this suppression is due to a recA+-dependent amplification of the 8.1 kb fragment; consistent with this observation, cloning of the 8.1 kb fragment into a high copy number plasmid (pBR325) leads also to suppression of dnaA46. In the suppressed strains growing at high temperature, bidirectional replication starts in or near the oriC region and requires the presence of the DnaA polypeptide. These findings suggest that the overproduction of a gene product(s), encoded by the cloned 8.1 kb fragment, can restore dnaA-dependent initiation of replication at high temperature in the oriC region. Genetic mapping shows that the groES (mopB) and groEL (mopA) genes are located on the 8.1 kb suppressor fragment. Further analysis, including in vitro mutagenesis and subcloning, demonstrates that the amplification of the groES and groEL genes is both necessary and sufficient to suppress the temperature sensitive phenotype of the dnaA46 mutation.

摘要

一个含有来自大肠杆菌染色体的8.1 kb EcoRI DNA片段的λ杂交噬菌体(λSda1),因其能够抑制由dnaA46突变引起的细菌热敏感性而被挑选出来。我们已经表明,这种抑制是由于8.1 kb片段的recA +依赖性扩增;与此观察结果一致,将8.1 kb片段克隆到高拷贝数质粒(pBR325)中也会导致对dnaA46的抑制。在高温下生长的被抑制菌株中,双向复制在oriC区域内或附近开始,并且需要DnaA多肽的存在。这些发现表明,由克隆的8.1 kb片段编码的一种或多种基因产物的过量产生可以在oriC区域高温下恢复依赖dnaA的复制起始。遗传图谱显示groES(mopB)和groEL(mopA)基因位于8.1 kb抑制片段上。进一步的分析,包括体外诱变和亚克隆,表明groES和groEL基因的扩增对于抑制dnaA46突变的温度敏感表型既是必要的也是充分的。

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