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通过 ParABS 系统的多层调控,实现细菌着丝粒的细胞周期依赖性组织。

Cell cycle-dependent organization of a bacterial centromere through multi-layered regulation of the ParABS system.

机构信息

de Duve Institute, UCLouvain, Brussels, Belgium.

John Innes Centre, Department of Molecular Microbiology, Norwich, United Kingdom.

出版信息

PLoS Genet. 2023 Sep 21;19(9):e1010951. doi: 10.1371/journal.pgen.1010951. eCollection 2023 Sep.

Abstract

The accurate distribution of genetic material is crucial for all organisms. In most bacteria, chromosome segregation is achieved by the ParABS system, in which the ParB-bound parS sequence is actively partitioned by ParA. While this system is highly conserved, its adaptation in organisms with unique lifestyles and its regulation between developmental stages remain largely unexplored. Bdellovibrio bacteriovorus is a predatory bacterium proliferating through polyploid replication and non-binary division inside other bacteria. Our study reveals the subcellular dynamics and multi-layered regulation of the ParABS system, coupled to the cell cycle of B. bacteriovorus. We found that ParA:ParB ratios fluctuate between predation stages, their balance being critical for cell cycle progression. Moreover, the parS chromosomal context in non-replicative cells, combined with ParB depletion at cell division, critically contribute to the unique cell cycle-dependent organization of the centromere in this bacterium, highlighting new levels of complexity in chromosome segregation and cell cycle control.

摘要

遗传物质的准确分配对所有生物都至关重要。在大多数细菌中,染色体分离是通过 ParABS 系统实现的,其中 ParB 结合的 parS 序列被 ParA 主动分配。虽然这个系统高度保守,但它在具有独特生活方式的生物中的适应性及其在发育阶段之间的调节仍然在很大程度上未被探索。蛭弧菌是一种通过多倍体复制和在其他细菌内部进行非二分法分裂来增殖的捕食性细菌。我们的研究揭示了 ParABS 系统与蛭弧菌细胞周期的亚细胞动力学和多层次调节。我们发现,ParA:ParB 比率在捕食阶段之间波动,其平衡对于细胞周期的进展至关重要。此外,非复制细胞中 parS 染色体结构域,加上细胞分裂时 ParB 的耗竭,对该细菌中独特的细胞周期依赖性着丝粒组织至关重要,突出了染色体分离和细胞周期控制的新的复杂性水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb1f/10547168/f83e494fe09f/pgen.1010951.g001.jpg

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