Breitwieser A, Gruber K, Sleytr U B
Zentrum für Ultrastrukturforschung, Universität für Bodenkultur, Vienna, Austria.
J Bacteriol. 1992 Dec;174(24):8008-15. doi: 10.1128/jb.174.24.8008-8015.1992.
Intact cells of Bacillus stearothermophilus PV72 revealed, after conventional thin-sectioning procedures, the typical cell wall profile of S-layer-carrying gram-positive eubacteria consisting of a ca. 10-nm-thick peptidoglycan-containing layer and a ca. 10-nm-thick S layer. Cell wall preparations obtained by breaking the cells and removing the cytoplasmic membrane by treatment with Triton X-100 revealed a triple-layer structure, with an additional S layer on the inner surface of the peptidoglycan. This profile is characteristic for cell wall preparations of many S-layer-carrying gram-positive eubacteria. Among several variants of strain PV72 obtained upon single colony isolation, we investigated the variant PV72 86-I, which does not exhibit an inner S layer on isolated cell walls but instead possesses a profile identical to that observed for intact cells. In the course of a controlled mild autolysis of isolated cell walls, S-layer subunits were released from the peptidoglycan of the variant and assembled into an additional S layer on the inner surface of the walls, leading to a three-layer cell wall profile as observed for cell wall preparations of the parent strain. In comparison to conventionally processed bacteria, freeze-substituted cells of strain PV72 and the variant strain revealed in thin sections a ca. 18-nm-wide electron-dense peptidoglycan-containing layer closely associated with the S layer. The demonstration of a pool of S-layer subunits in such a thin peptidoglycan layer in an amount at least sufficient for generating one coherent lattice on the cell surface indicated that the subunits must have occupied much of the free space in the wall fabric of both the parent strain and the variant. It can even be speculated that the rate of synthesis and translation of the S-layer protein is influenced by the packing density of the S-layer subunits in the periplasm of the cell wall delineated by the outer S layer and the cytoplasmic membrane. Our data indicate that the matrix of the rigid wall layer inhibits the assembly of the S-layer subunits which are in transit to the outside.
嗜热脂肪芽孢杆菌PV72的完整细胞在经过传统的超薄切片程序后,呈现出典型的携带S层的革兰氏阳性真细菌的细胞壁轮廓,由一层约10纳米厚的含肽聚糖层和一层约10纳米厚的S层组成。通过破碎细胞并用Triton X - 100处理去除细胞质膜而获得的细胞壁制剂显示出三层结构,在肽聚糖的内表面还有一层额外的S层。这种轮廓是许多携带S层的革兰氏阳性真细菌细胞壁制剂的特征。在单菌落分离获得的菌株PV72的几个变体中,我们研究了变体PV72 86 - I,它在分离的细胞壁上没有内S层,而是具有与完整细胞观察到的相同轮廓。在分离细胞壁的可控温和自溶过程中,S层亚基从变体的肽聚糖中释放出来,并在壁的内表面组装成一层额外的S层,导致细胞壁轮廓呈现出与亲本菌株细胞壁制剂中观察到的三层结构。与传统处理的细菌相比,PV72菌株和变体菌株的冷冻替代细胞在超薄切片中显示出一层约18纳米宽的电子致密含肽聚糖层,与S层紧密相关。在如此薄的肽聚糖层中存在的S层亚基库,其数量至少足以在细胞表面形成一个连贯的晶格,这表明这些亚基一定占据了亲本菌株和变体细胞壁结构中大部分的自由空间。甚至可以推测,S层蛋白的合成和翻译速率受外S层和细胞质膜界定的细胞壁周质中S层亚基堆积密度的影响。我们的数据表明,刚性壁层的基质抑制了正在转运到外部的S层亚基的组装。