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遗传对代谢波动的响应:大肠杆菌中心碳代谢与 DNA 复制的相关性。

Genetic response to metabolic fluctuations: correlation between central carbon metabolism and DNA replication in Escherichia coli.

机构信息

Department of Molecular Biology, University of Gdańsk, Kładki 24, 80-822 Gdańsk, Poland.

出版信息

Microb Cell Fact. 2011 Mar 31;10:19. doi: 10.1186/1475-2859-10-19.

Abstract

BACKGROUND

Until now, the direct link between central carbon metabolism and DNA replication has been demonstrated only in Bacillus. subtilis. Therefore, we asked if this is a specific phenomenon, characteristic for this bacterium and perhaps for its close relatives, or a more general biological rule.

RESULTS

We found that temperature-sensitivity of mutants in particular genes coding for replication proteins could be suppressed by deletions of certain genes coding for enzymes of the central carbon metabolism. Namely, the effects of dnaA46(ts) mutation could be suppressed by dysfunction of pta or ackA, effects of dnaB(ts) by dysfunction of pgi or pta, effects of dnaE486(ts) by dysfunction of tktB, effects of dnaG(ts) by dysfunction of gpmA, pta or ackA, and effects of dnaN159(ts) by dysfunction of pta or ackA. The observed suppression effects were not caused by a decrease in bacterial growth rate.

CONCLUSIONS

The genetic correlation exists between central carbon metabolism and DNA replication in the model Gram-negative bacterium, E. coli. This link exists at the steps of initiation and elongation of DNA replication, indicating the important global correlation between metabolic status of the cell and the events leading to cell reproduction.

摘要

背景

到目前为止,中心碳代谢与 DNA 复制之间的直接联系仅在枯草芽孢杆菌中得到证实。因此,我们想知道这是一种特殊现象,仅存在于该细菌及其近亲中,还是一种更为普遍的生物学规律。

结果

我们发现,特定复制蛋白基因的突变体的温度敏感性可以通过删除某些中心碳代谢酶的基因来得到抑制。即 dnaA46(ts)突变的影响可以通过 pta 或 ackA 的功能障碍来抑制,dnaB(ts)的影响可以通过 pgi 或 pta 的功能障碍来抑制,dnaE486(ts)的影响可以通过 tktB 的功能障碍来抑制,dnaG(ts)的影响可以通过 gpmA、pta 或 ackA 的功能障碍来抑制,dnaN159(ts)的影响可以通过 pta 或 ackA 的功能障碍来抑制。观察到的抑制作用不是由于细菌生长速度的降低引起的。

结论

在模式革兰氏阴性菌大肠杆菌中,中心碳代谢与 DNA 复制之间存在遗传相关性。这种联系存在于 DNA 复制的起始和延伸步骤中,表明细胞代谢状态与导致细胞繁殖的事件之间存在重要的全局相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/027d/3080795/bb5d0692519f/1475-2859-10-19-1.jpg

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