The ithree institute, University of Technology Sydney, Sydney 2007, NSW, Australia.
Department of Microbiology and Immunobiology, Harvard Medical School, Boston, MA 02115, USA.
Semin Cell Dev Biol. 2016 May;53:2-9. doi: 10.1016/j.semcdb.2015.11.012. Epub 2015 Dec 17.
Proper division site selection is crucial for the survival of all organisms. What still eludes us is how bacteria position their division site with high precision, and in tight coordination with chromosome replication and segregation. Until recently, the general belief, at least in the model organisms Bacillus subtilis and Escherichia coli, was that spatial regulation of division comes about by the combined negative regulatory mechanisms of the Min system and nucleoid occlusion. However, as we review here, these two systems cannot be solely responsible for division site selection and we highlight additional regulatory mechanisms that are at play. In this review, we put forward evidence of how chromosome replication and segregation may have direct links with cell division in these bacteria and the benefit of recent advances in chromosome conformation capture techniques in providing important information about how these three processes mechanistically work together to achieve accurate generation of progenitor cells.
正确的分裂位点选择对所有生物的生存都是至关重要的。但目前我们仍不清楚的是,细菌如何高精度地定位其分裂位点,并与染色体复制和分离紧密协调。直到最近,人们普遍认为,至少在模式生物枯草芽孢杆菌和大肠杆菌中,分裂的空间调节是通过 Min 系统和核区封闭的组合负调控机制实现的。然而,正如我们在这里所回顾的那样,这两个系统不能完全负责分裂位点的选择,我们强调了其他起作用的调控机制。在这篇综述中,我们提出了证据,表明染色体复制和分离如何与这些细菌中的细胞分裂直接相关,以及染色体构象捕获技术的最新进展如何提供关于这三个过程如何协同作用以实现祖细胞的精确产生的重要信息。