Krause Klaudyna, Maciąg-Dorszyńska Monika, Wosinski Anna, Gaffke Lidia, Morcinek-Orłowska Joanna, Rintz Estera, Bielańska Patrycja, Szalewska-Pałasz Agnieszka, Muskhelishvili Georgi, Węgrzyn Grzegorz
Department of Bacterial Molecular Genetics, University of Gdansk, 80-308 Gdansk, Poland.
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 80-822 Gdansk, Poland.
Genes (Basel). 2020 Apr 19;11(4):447. doi: 10.3390/genes11040447.
A direct link between DNA replication regulation and central carbon metabolism (CCM) has been previously demonstrated in and , as effects of certain mutations in genes coding for replication proteins could be specifically suppressed by particular mutations in genes encoding CCM enzymes. However, specific molecular mechanism(s) of this link remained unknown. In this report, we demonstrate that various CCM metabolites can suppress the effects of mutations in different replication genes of on bacterial growth, cell morphology, and nucleoid localization. This provides evidence that the CCM-replication link is mediated by metabolites rather than direct protein-protein interactions. On the other hand, action of metabolites on DNA replication appears indirect rather than based on direct influence on the replication machinery, as rate of DNA synthesis could not be corrected by metabolites in short-term experiments. This corroborates the recent discovery that in , there are multiple links connecting CCM to DNA replication initiation and elongation. Therefore, one may suggest that although different in detail, the molecular mechanisms of CCM-dependent regulation of DNA replication are similar in and , making this regulation an important and common constituent of the control of cell physiology in bacteria.
DNA复制调控与中心碳代谢(CCM)之间的直接联系先前已在[具体文献1]和[具体文献2]中得到证实,因为编码复制蛋白的基因中的某些突变效应可被编码CCM酶的基因中的特定突变特异性抑制。然而,这种联系的具体分子机制仍不清楚。在本报告中,我们证明了各种CCM代谢物可抑制[具体细菌名称]不同复制基因中的突变对细菌生长、细胞形态和类核定位的影响。这提供了证据表明CCM-复制联系是由代谢物介导的,而非直接的蛋白质-蛋白质相互作用。另一方面,代谢物对DNA复制的作用似乎是间接的,而非基于对复制机器的直接影响,因为在短期实验中代谢物无法校正DNA合成速率。这证实了最近的发现,即在[具体细菌名称]中,存在多个将CCM与DNA复制起始和延伸联系起来的环节。因此,可以认为,尽管细节不同,但在[具体细菌名称1]和[具体细菌名称2]中,CCM依赖的DNA复制调控的分子机制是相似的,使得这种调控成为细菌细胞生理控制的重要且常见的组成部分。