de Pedro Miguel A, Young Kevin D, Höltje Joachim-Volker, Schwarz Heinz
Centro de Biología Molecular "Severo Ochoa," Consejo Superior de Investigaciones Científicas, Universidad Autónoma de Madrid, Campus de Cantoblanco, 28049 Madrid, Spain.
J Bacteriol. 2003 Feb;185(4):1147-52. doi: 10.1128/JB.185.4.1147-1152.2003.
Some strains of Escherichia coli defective for dacA, the gene coding for penicillin-binding protein 5, exhibit a strong branching phenotype when cell division is blocked. Since such branch formation implies a differentiation of polar caps at ectopic locations in the cell envelope, we analyzed murein segregation and observed a strong correlation between areas of inert murein and these morphological anomalies. In particular, the tips of branches exhibited the same properties as those described for polar caps of wild-type cells, i.e., the synthesis and turnover of murein were inhibited. Also, the mobility of cell envelope proteins was apparently constrained in areas with morphological defects. Polar regions of branching cells and sacculi had aberrant morphologies with a very high frequency. Of special interest was that areas of inert murein at polar caps were often split by areas of active synthesis, a situation unlike that observed in wild-type cells. These observations suggest that in dacA mutants, branches and other morphological anomalies may arise from split polar caps or by de novo generation of new poles built around inert peptidoglycan patches in the side walls of the cell.
一些编码青霉素结合蛋白5的基因dacA存在缺陷的大肠杆菌菌株,在细胞分裂受阻时会表现出强烈的分支表型。由于这种分支形成意味着在细胞膜异位位置的极性帽发生了分化,我们分析了胞壁质的分离情况,并观察到惰性胞壁质区域与这些形态异常之间存在很强的相关性。特别是,分支的尖端表现出与野生型细胞极性帽相同的特性,即胞壁质的合成和周转受到抑制。此外,细胞膜蛋白的流动性在形态缺陷区域明显受到限制。分支细胞和细胞壁的极性区域经常出现异常形态。特别值得注意的是,极性帽处的惰性胞壁质区域常常被活跃合成区域分割,这种情况与野生型细胞中观察到的不同。这些观察结果表明,在dacA突变体中,分支和其他形态异常可能源于极性帽的分裂,或者是围绕细胞侧壁中惰性肽聚糖斑块重新生成新的极而产生的。