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某些噬菌体T4复制前基因的表达受损解释了大肠杆菌rho(nusD)突变体中T4 DNA合成受损的原因。

Impaired expression of certain prereplicative bacteriophage T4 genes explains impaired T4 DNA synthesis in Escherichia coli rho (nusD) mutants.

作者信息

Stitt B L, Mosig G

机构信息

Department of Molecular Biology, Vanderbilt University, Nashville, Tennessee 37235.

出版信息

J Bacteriol. 1989 Jul;171(7):3872-80. doi: 10.1128/jb.171.7.3872-3880.1989.

Abstract

The Escherichia coli rho 026 mutation that alters the transcription termination protein Rho prevents growth of wild-type bacteriophage T4. Among the consequences of this mutation are delayed and reduced T4 DNA replication. We show that these defects can be explained by defective synthesis of certain T4 replication-recombination proteins. Expression of T4 gene 41 (DNA helicase/primase) is drastically reduced, and expression of T4 genes 43 (DNA polymerase), 30 (DNA ligase), 46 (recombination nuclease), and probably 44 (DNA polymerase-associated ATPase) is reduced to a lesser extent. The compensating T4 mutation goF1 partially restores the synthesis of these proteins and, concomitantly, the synthesis of T4 DNA in the E. coli rho mutant. From analyzing DNA synthesis in wild-type and various multiply mutant T4 strains, we infer that defective or reduced synthesis of these proteins in rho 026-infected cells has several major effects on DNA replication. It impairs lagging-strand synthesis during the primary mode of DNA replication; it delays and depresses recombination-dependent (secondary mode) initiation; and it inhibits the use of tertiary origins. All three T4 genes whose expression is reduced in rho 026 cells and whose upstream sequences are known have a palindrome containing a CUUCGG sequence between the promoter(s) and ribosome-binding site. We speculate that these palindromes might be important for factor-dependent transcription termination-antitermination during normal T4 development. Our results are consistent with previous proposals that the altered Rho factor of rho 026 may cause excessive termination because the transcription complex does not interact normally with a T4 antiterminator encoded by the wild-type goF gene and that the T4 goF1 mutation restores this interaction.

摘要

改变转录终止蛋白Rho的大肠杆菌rho 026突变会阻止野生型噬菌体T4的生长。该突变的后果之一是T4 DNA复制延迟且减少。我们表明,这些缺陷可以通过某些T4复制 - 重组蛋白的合成缺陷来解释。T4基因41(DNA解旋酶/引发酶)的表达大幅降低,T4基因43(DNA聚合酶)、30(DNA连接酶)、46(重组核酸酶)以及可能的44(与DNA聚合酶相关的ATP酶)的表达也有不同程度的降低。补偿性的T4突变goF1部分恢复了这些蛋白质的合成,并随之恢复了大肠杆菌rho突变体中T4 DNA的合成。通过分析野生型和各种多重突变T4菌株中的DNA合成,我们推断rho 026感染细胞中这些蛋白质的合成缺陷或减少对DNA复制有几个主要影响。它损害了DNA复制主要模式中的滞后链合成;延迟并抑制了依赖重组(次要模式)的起始;并抑制了三级起始点的使用。在rho 026细胞中表达降低且其上游序列已知的所有三个T4基因,在启动子和核糖体结合位点之间都有一个包含CUUCGG序列的回文结构。我们推测这些回文结构可能在正常T4发育过程中对因子依赖性转录终止 - 抗终止很重要。我们的结果与之前的提议一致,即rho 026改变的Rho因子可能导致过度终止,因为转录复合物不能正常与由野生型goF基因编码的T4抗终止子相互作用,并且T4 goF1突变恢复了这种相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaf6/210138/5cf6f86f45cd/jbacter00173-0296-a.jpg

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