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Replicating DNA by cell factories: roles of central carbon metabolism and transcription in the control of DNA replication in microbes and implications for understanding this process in human cells

机译:通过细胞工厂复制DNA:中央碳代谢和转录在微生物DNA复制控制中的作用以及对理解人类细胞中这一过程的意义

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摘要

Precise regulation of DNA replication is necessary to ensure the inheritance of genetic features by daughter cells after each cell division. Therefore, determining how the regulatory processes operate to control DNA replication is crucial to our understanding and application to biotechnological processes. Contrary to early concepts of DNA replication, it appears that this process is operated by large, stationary nucleoprotein complexes, called replication factories, rather than by single enzymes trafficking along template molecules. Recent discoveries indicated that in bacterial cells two processes, central carbon metabolism (CCM) and transcription, significantly and specifically influence the control of DNA replication of various replicons. The impact of these discoveries on our understanding of the regulation of DNA synthesis is discussed in this review. It appears that CCM may influence DNA replication by either action of specific metabolites or moonlighting activities of some enzymes involved in this metabolic pathway. The role of transcription in the control of DNA replication may arise from either topological changes in nucleic acids which accompany RNA synthesis or direct interactions between replication and transcription machineries. Due to intriguing similarities between some prokaryotic and eukaryotic regulatory systems, possible implications of studies on regulation of microbial DNA replication on understanding such a process occurring in human cells are discussed.
机译:精确调节DNA复制对于确保子代细胞在每次细胞分裂后继承遗传特征是必要的。因此,确定调节过程如何操作以控制DNA复制对于我们理解和应用于生物技术过程至关重要。与DNA复制的早期概念相反,该过程似乎由称为复制工厂的大型固定核蛋白复合物驱动,而不是由沿模板分子运输的单一酶进行。最近的发现表明,在细菌细胞中,中央碳代谢(CCM)和转录这两个过程显着且特异性地影响了各种复制子对DNA复制的控制。这些发现对我们对DNA合成调控的理解的影响将在本文中进行讨论。看来CCM可能通过特定代谢物的作用或参与该代谢途径的某些酶的月光活动来影响DNA复制。转录在控制DNA复制中的作用可能来自伴随RNA合成的核酸拓扑变化或复制与转录机制之间的直接相互作用。由于某些原核和真核调节系统之间的相似性令人着迷,因此讨论了研究微生物DNA复制的调节对理解人类细胞中发生的这种过程可能产生的影响。

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