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染色体组织塑造了新月柄杆菌中的复制体动态。

Chromosome organization shapes replisome dynamics in Caulobacter crescentus.

作者信息

Zhang Chen, Joseph Asha Mary, Casini Laurent, Collier Justine, Badrinarayanan Anjana, Manley Suliana

机构信息

Laboratory of Experimental Biophysics, Institute of Physics, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore, India.

出版信息

Nat Commun. 2024 Apr 24;15(1):3460. doi: 10.1038/s41467-024-47849-6.

Abstract

DNA replication in bacteria takes place on highly compacted chromosomes, where segregation, transcription, and repair must occur simultaneously. Within this dynamic environment, colocalization of sister replisomes has been observed in many bacterial species, driving the hypothesis that a physical linker may tether them together. However, replisome splitting has also been reported in many of the same species, leaving the principles behind replisome organization a long-standing puzzle. Here, by tracking the replisome β-clamp subunit in live Caulobacter crescentus, we find that rapid DNA segregation can give rise to a second focus which resembles a replisome, but does not replicate DNA. Sister replisomes can remain colocalized, or split apart to travel along DNA separately upon disruption of chromosome inter-arm alignment. Furthermore, chromosome arm-specific replication-transcription conflicts differentially modify replication speed on the two arms, facilitate the decoupling of the two replisomes. With these observations, we conclude that the dynamic chromosome organization flexibly shapes the organization of sister replisomes, and we outline principles which can help to reconcile previously conflicting models of replisome architecture.

摘要

细菌中的DNA复制发生在高度压缩的染色体上,在那里,染色体分离、转录和修复必须同时进行。在这种动态环境中,许多细菌物种中都观察到姐妹复制体的共定位,这促使人们提出一种假设,即可能存在一种物理连接物将它们拴在一起。然而,在许多相同的物种中也报道了复制体的分裂,这使得复制体组织背后的原理长期以来一直是个谜。在这里,通过追踪活的新月柄杆菌中的复制体β夹亚基,我们发现快速的DNA分离可以产生第二个类似于复制体的焦点,但不进行DNA复制。姐妹复制体可以保持共定位,或者在染色体臂间排列被破坏时分开,沿着DNA分别移动。此外,染色体臂特异性的复制-转录冲突会以不同方式改变两条臂上的复制速度,促进两个复制体的解偶联。基于这些观察结果,我们得出结论,动态的染色体组织灵活地塑造了姐妹复制体的组织形式,并且我们概述了一些原则,这些原则有助于协调先前相互冲突的复制体结构模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96a6/11043382/03d40a7e0699/41467_2024_47849_Fig1_HTML.jpg

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