Costa Teresa, Priyadarshini Richa, Jacobs-Wagner Christine
Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, CT 06520, USA.
Mol Microbiol. 2008 Nov;70(3):634-51. doi: 10.1111/j.1365-2958.2008.06432.x. Epub 2008 Sep 10.
In rod-shaped bacteria, septal peptidoglycan synthesis involves the late recruitment of the ftsI gene product (PBP3 in Escherichia coli) to the FtsZ ring. We show that in Caulobacter crescentus, PBP3 accumulates at the new pole at the beginning of the cell cycle. Fluorescence recovery after photobleaching experiments reveal that polar PBP3 molecules are, constantly and independently of FtsZ, replaced by those present in the cellular pool, implying that polar PBP3 is not a remnant of the previous division. By the time cell constriction is initiated, all PBP3 polar accumulation has disappeared in favour of an FtsZ-dependent localization near midcell, consistent with PBP3 function in cell division. Kymograph analysis of time-lapse experiments shows that the recruitment of PBP3 to the FtsZ ring is progressive and initiated very early on, shortly after FtsZ ring formation and well before cell constriction starts. Accumulation of PBP3 near midcell is also highly dynamic with a rapid exchange of PBP3 molecules between midcell and cellular pools. Localization of PBP3 at both midcell and pole appears multifactorial, primarily requiring the catalytic site of PBP3. Collectively, our results suggest a role for PBP3 in pole morphogenesis and provide new insights into the process of peptidoglycan assembly during division.
在杆状细菌中,隔膜肽聚糖的合成涉及ftsI基因产物(大肠杆菌中的PBP3)在细胞分裂后期募集到FtsZ环。我们发现,在新月柄杆菌中,PBP3在细胞周期开始时在新极积累。光漂白后荧光恢复实验表明,极性PBP3分子不断且独立于FtsZ被细胞池中存在的分子取代,这意味着极性PBP3不是前一次分裂的残余物。当细胞缢缩开始时,所有PBP3的极性积累都消失了,转而在细胞中部附近出现依赖于FtsZ的定位,这与PBP3在细胞分裂中的功能一致。对延时实验的动态图像分析表明,PBP3募集到FtsZ环是渐进的,并且在很早的时候就开始了,即在FtsZ环形成后不久且在细胞缢缩开始之前。PBP3在细胞中部附近的积累也具有高度动态性,PBP3分子在细胞中部和细胞池之间快速交换。PBP3在细胞中部和极的定位似乎是多因素的,主要需要PBP3的催化位点。总的来说,我们的结果表明PBP3在极形态发生中起作用,并为分裂过程中肽聚糖组装过程提供了新的见解。