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相分离的 ParB 强制不同的 DNA 压缩模式,并稳定以 parS 为中心的分区复合物。

Phase-separated ParB enforces diverse DNA compaction modes and stabilizes the parS-centered partition complex.

机构信息

School of Life Science and Technology, ShanghaiTech University, Shanghai 201210, China.

Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 201210, China.

出版信息

Nucleic Acids Res. 2024 Aug 12;52(14):8385-8398. doi: 10.1093/nar/gkae533.

Abstract

The tripartite ParABS system mediates chromosome segregation in the majority of bacterial species. Typically, DNA-bound ParB proteins around the parS sites condense the chromosomal DNA into a higher-order multimeric nucleoprotein complex for the ParA-driven partition. Despite extensive studies, the molecular mechanism underlying the dynamic assembly of the partition complex remains unclear. Herein, we demonstrate that Bacillus subtilis ParB (Spo0J), through the multimerization of its N-terminal domain, forms phase-separated condensates along a single DNA molecule, leading to the concurrent organization of DNA into a compact structure. Specifically, in addition to the co-condensation of ParB dimers with DNA, the engagement of well-established ParB condensates with DNA allows for the compression of adjacent DNA and the looping of distant DNA. Notably, the presence of CTP promotes the formation of condensates by a low amount of ParB at parS sites, triggering two-step DNA condensation. Remarkably, parS-centered ParB-DNA co-condensate constitutes a robust nucleoprotein architecture capable of withstanding disruptive forces of tens of piconewton. Overall, our findings unveil diverse modes of DNA compaction enabled by phase-separated ParB and offer new insights into the dynamic assembly and maintenance of the bacterial partition complex.

摘要

三方 ParABS 系统介导了大多数细菌物种的染色体分离。通常情况下,ParB 蛋白会在 parS 位点周围结合 DNA,将染色体 DNA 浓缩成一种更高阶的多聚核蛋白复合物,以便 ParA 驱动分区。尽管进行了广泛的研究,但分区复合物的动态组装的分子机制仍不清楚。本文中,我们证明了枯草芽孢杆菌 ParB(Spo0J)通过其 N 端结构域的多聚化,沿着单个 DNA 分子形成相分离的凝聚物,从而将 DNA 同时组织成紧凑的结构。具体来说,除了 ParB 二聚体与 DNA 的共凝聚外,成熟的 ParB 凝聚物与 DNA 的结合允许相邻 DNA 的压缩和远距离 DNA 的环化。值得注意的是,CTP 的存在通过 ParB 在 parS 位点的低浓度促进了凝聚物的形成,引发了两步 DNA 凝聚。值得注意的是,以 parS 为中心的 ParB-DNA 共凝聚物构成了一种稳健的核蛋白结构,能够承受数十皮牛顿的破坏力。总的来说,我们的发现揭示了相分离的 ParB 所实现的多种 DNA 紧缩模式,并为细菌分区复合物的动态组装和维持提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/724d/11317135/817118794985/gkae533figgra1.jpg

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