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A major autolysin of Pseudomonas aeruginosa: subcellular distribution potential role in cell growth and division and secretion in surface membrane vesicles.

机译:铜绿假单胞菌的主要自溶素:亚细胞分布在细胞生长表面膜囊泡分裂和分泌中的潜在作用。

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摘要

A 26-kDa murein hydrolase is the major autolysin of Pseudomonas aeruginosa PAO1, and its expression can be correlated with the growth and division of cells in both batch and synchronously growing cultures. In batch cultures, it is detected primarily during the mid-exponential growth phase, and in synchronous cultures, it is detected primarily during the cell elongation and division phases. Immunogold labeling of thin sections of P. aeruginosa using antibodies raised against the 26-kDa autolysin revealed that it is associated mainly with the cell envelope and in particular within the periplasm. It is also tightly bound to the peptidoglycan layer, since murein sacculi, isolated by boiling 4% sodium dodecyl sulfate treatment, could also be immunogold labeled. Since division is due to cell constriction in this P. aeruginosa strain (septa are rarely seen), we cannot comment on the autolysin's contribution to septation, although constriction sites were always heavily labeled. Some labeling was also found in the cytoplasm, and this was thought to be due to the de novo synthesis of the enzyme before translocation to the periplasm. Interestingly, the autolysin was also found to be associated with natural membrane vesicles which blebbed from the surface during cell growth; the enzyme is therefore part of the complex makeup of these membrane packages of secreted materials (J. L. Kadurugamuwa and T. J. Beveridge, J. Bacteriol. 177:3998-4008, 1995). The expression of these membrane vesicles was correlated with the expression of B-band lipopolysaccharide.
机译:26 kDa murein水解酶是铜绿假单胞菌PAO1的主要自溶素,在分批培养和同步培养中,其表达都可能与细胞的生长和分裂有关。在分批培养中,主要在指数中期生长阶段检测到它,而在同步培养中,主要在细胞伸长和分裂阶段检测到它。使用针对26 kDa自溶素的抗体对铜绿假单胞菌的薄切片进行免疫金标记显示,它主要与细胞包膜有关,特别是在周质中。它也与肽聚糖层紧密结合,因为通过沸腾4%十二烷基硫酸钠处理而分离出的壁粘菌素也可以进行免疫金标记。由于分裂是由于该铜绿假单胞菌菌株中的细胞收缩引起的(很少见到septa),尽管收缩位点总是被大量标记,但我们无法评论自溶素对分离的贡献。在细胞质中也发现了一些标记,这被认为是由于该酶从易位到周质之前的从头合成。有趣的是,还发现自溶素与细胞生长过程中从表面起泡的天然膜囊泡有关。因此,该酶是这些分泌材料的膜包装的复杂组成的一部分(J. L. Kadurugamuwa和T. J. Beveridge,J. Bacteriol。177:3998-4008,1995)。这些膜囊泡的表达与B带脂多糖的表达相关。

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