Real Gonçalo, Autret Sabine, Harry Elizabeth J, Errington Jeffery, Henriques Adriano O
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Avenida da República, Apartado 127, 2781-901 Oeiras Codex, Portugal.
Mol Microbiol. 2005 Jan;55(2):349-67. doi: 10.1111/j.1365-2958.2004.04399.x.
The initiation of the developmental process of sporulation in the rod-shaped bacterium Bacillus subtilis involves the activation of the Spo0A response regulator. Spo0A then drives the switch in the site of division septum formation from midcell to a polar position. Activated Spo0A is required for the transcription of key sporulation loci such as spoIIG, which are negatively regulated by the Soj protein. The transcriptional repressing activity of Soj is antagonized by Spo0J, and both proteins belong to the well-conserved Par family of partitioning proteins. Soj has been shown to jump from nucleoid to nucleoid via the cell pole. The dynamic behaviour of Soj is somehow controlled by Spo0J, which prevents the static association of Soj with the nucleoid, and presumably its transcriptional repression activity. Soj in turn is required for the proper condensation of Spo0J foci around the oriC region. The asymmetric partitioning of the sporangial cell requires DivIB and other proteins involved in vegetative (medial) division. We describe an allele of the cell division gene divIB (divIB80) that reduces the cellular levels of DivIB, and affects nucleoid structure and segregation in growing cells, yet has no major impact on cell division. In divIB80 cells Spo0J foci are not correctly condensed and Soj associates statically with the nucleoid. The divIB80 allele prevents transcription of spoIIG, and arrests sporulation prior to the formation of the asymmetric division septum. The defect in Spo0A-dependent gene expression, and the Spo- phenotype can be suppressed by expression of divIB in trans or by deletion of the soj-spo0J locus. However, deletion of the spo0J-soj region does not restore the normal cellular levels of DivIB. Therefore, the reduced levels of DivIB in the divIB80 mutant are sufficient for efficient cell division, but not to sustain a second, earlier function of DivIB related to the activity of the Spo0J/Soj system of chromosome segregation.
杆状细菌枯草芽孢杆菌中孢子形成发育过程的起始涉及Spo0A应答调节因子的激活。然后,Spo0A促使分裂隔膜形成位点从细胞中部切换到极性位置。激活的Spo0A是关键孢子形成基因座(如spoIIG)转录所必需的,而这些基因座受到Soj蛋白的负调控。Soj的转录抑制活性受到Spo0J的拮抗,这两种蛋白都属于保守的Par家族分区蛋白。已表明Soj通过细胞极从一个类核跳到另一个类核。Soj的动态行为在某种程度上受Spo0J控制,Spo0J可防止Soj与类核的静态结合,大概也能防止其转录抑制活性。反过来,Soj是oriC区域周围Spo0J焦点正确凝聚所必需的。芽孢囊细胞的不对称分配需要DivIB和其他参与营养(中部)分裂的蛋白。我们描述了细胞分裂基因divIB的一个等位基因(divIB80),它降低了DivIB的细胞水平,并影响生长细胞中的类核结构和分离,但对细胞分裂没有重大影响。在divIB80细胞中,Spo0J焦点不能正确凝聚,Soj与类核静态结合。divIB80等位基因阻止spoIIG的转录,并在不对称分裂隔膜形成之前阻止孢子形成。Spo0A依赖性基因表达的缺陷以及Spo-表型可通过反式表达divIB或缺失soj-spo0J基因座来抑制。然而,缺失spo0J-soj区域并不能恢复DivIB的正常细胞水平。因此,divIB80突变体中DivIB水平的降低足以进行有效的细胞分裂,但不足以维持DivIB与染色体分离的Spo0J/Soj系统活性相关的第二个早期功能。