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Self-organised segregation of bacterial chromosomal origins.


ABSTRACT: The chromosomal replication origin region (ori) of characterised bacteria is dynamically positioned throughout the cell cycle. In slowly growing Escherichia coli, ori is maintained at mid-cell from birth until its replication, after which newly replicated sister oris move to opposite quarter positions. Here, we provide an explanation for ori positioning based on the self-organisation of the Structural Maintenance of Chromosomes complex, MukBEF, which forms dynamically positioned clusters on the chromosome. We propose that a non-trivial feedback between the self-organising gradient of MukBEF complexes and the oris leads to accurate ori positioning. We find excellent agreement with quantitative experimental measurements and confirm key predictions. Specifically, we show that oris exhibit biased motion towards MukBEF clusters, rather than mid-cell. Our findings suggest that MukBEF and oris act together as a self-organising system in chromosome organisation-segregation and introduces protein self-organisation as an important consideration for future studies of chromosome dynamics.

SUBMITTER: Hofmann A 

PROVIDER: S-EPMC6701925 | biostudies-literature | 2019 Aug

REPOSITORIES: biostudies-literature

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Self-organised segregation of bacterial chromosomal origins.

Hofmann Andreas A   Mäkelä Jarno J   Sherratt David J DJ   Heermann Dieter D   Murray Seán M SM  

eLife 20190809


The chromosomal replication origin region (<i>ori</i>) of characterised bacteria is dynamically positioned throughout the cell cycle. In slowly growing <i>Escherichia coli</i>, <i>ori</i> is maintained at mid-cell from birth until its replication, after which newly replicated sister <i>ori</i>s move to opposite quarter positions. Here, we provide an explanation for <i>ori</i> positioning based on the self-organisation of the Structural Maintenance of Chromosomes complex, MukBEF, which forms dyna  ...[more]

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