Goley Erin D, Iniesta Antonio A, Shapiro Lucy
Department of Developmental Biology, Beckman Center, Stanford University School of Medicine, 279 Campus Drive, Stanford, CA 94305, USA.
J Cell Sci. 2007 Oct 15;120(Pt 20):3501-7. doi: 10.1242/jcs.005967.
Cellular reproduction in all organisms requires temporal and spatial coordination of crucial events, notably DNA replication, chromosome segregation and cytokinesis. Recent studies on the dimorphic bacterium Caulobacter crescentus (Caulobacter) highlight mechanisms by which positional information is integrated with temporal modes of cell cycle regulation. Caulobacter cell division is inherently asymmetric, yielding progeny with different fates: stalked cells and swarmer cells. Cell type determinants in stalked progeny promote entry into S phase, whereas swarmer progeny remain in G1 phase. Moreover, initiation of DNA replication is allowed only once per cell cycle. This finite window of opportunity is imposed by coordinating spatially constrained proteolysis of CtrA, an inhibitor of DNA replication initiation, with forward progression of the cell cycle. Positional cues are equally important in coordinating movement of the chromosome with cell division site selection in Caulobacter. The chromosome is specifically and dynamically localized over the course of the cell cycle. As the duplicated chromosomes are partitioned, factors that restrict assembly of the cell division protein FtsZ associate with a chromosomal locus near the origin, ensuring that the division site is located towards the middle of the cell.
所有生物体中的细胞繁殖都需要关键事件在时间和空间上的协调,尤其是DNA复制、染色体分离和胞质分裂。最近对二态细菌新月柄杆菌(Caulobacter)的研究突出了位置信息与细胞周期调控时间模式相结合的机制。Caulobacter的细胞分裂本质上是不对称的,产生具有不同命运的后代:柄细胞和游动细胞。柄状后代中的细胞类型决定因素促进进入S期,而游动后代则停留在G1期。此外,每个细胞周期中DNA复制只能启动一次。这个有限的机会窗口是通过协调空间受限的CtrA(DNA复制起始抑制剂)蛋白水解与细胞周期的向前推进来实现的。位置线索对于协调Caulobacter中染色体的移动与细胞分裂位点的选择同样重要。在细胞周期过程中,染色体具有特定的动态定位。随着复制后的染色体被分配,限制细胞分裂蛋白FtsZ组装的因子与靠近原点的染色体位点相关联,确保分裂位点位于细胞中部附近。