Olabarría G, Carrascosa J L, de Pedro M A, Berenguer J
Centro de Biología Molecular, Severo Ochoa, Universidad Autónoma de Madrid, Spain.
J Bacteriol. 1996 Aug;178(16):4765-72. doi: 10.1128/jb.178.16.4765-4772.1996.
There is experimental evidence to suggest that the 100-kDa S-layer protein from Thermus thermophilus HB8 binds to the peptidoglycan cell wall. This property could be related to the presence of a region (SLH) of homology with other S-layer proteins and extracellular enzymes (A. Lupas, H. Engelhardt, J. Peters, U. Santarius, S. Volker, and W. Baumeister, J. Bacteriol. 176:1224-1233, 1994). By using specific monoclonal antibodies, we show that similar regions are present in different members of the Deinococcus-Thermus phylogenetic group. To analyze the role that the SLH domain plays in vivo and in vitro in T. thermophilus, we have obtained a mutant form (slpA.X) of the S-layer gene (slpA) in which the SLH domain was deleted. The slpA.X gene was inserted into the chromosome of the thermophile by gene replacement, resulting in a mutant which expressed a major membrane protein with the size expected from the construction (90 kDa). This protein was identified as the product of slpA.X by its differential reaction with monoclonal antibodies. Mutants expressing the SlpA.X protein grow as groups of cells, surrounded by a common external envelope of trigonal symmetry that contains the SlpA.X protein as a main component, thus showing the inability of the SLH-defective protein to attach to the underlying material in vivo. In addition, averaged images of SlpA.X-rich fractions showed a regular arrangement, identical to that built up by the wild-type (SlpA) protein in the absence of peptidoglycan. Finally, we demonstrate by Western blotting (immunoblotting) the direct role of the SLH domain in the binding of the S-layer of T. thermophilus HB8 to the peptidoglycan layer.
有实验证据表明,嗜热栖热菌HB8的100 kDa S层蛋白与肽聚糖细胞壁结合。这一特性可能与该蛋白中一个与其他S层蛋白及细胞外酶具有同源性的区域(SLH)有关(A. Lupas、H. Engelhardt、J. Peters、U. Santarius、S. Volker和W. Baumeister,《细菌学杂志》176:1224 - 1233,1994年)。通过使用特异性单克隆抗体,我们发现类似区域存在于嗜热栖热菌 - 栖热放线菌系统发育组的不同成员中。为了分析SLH结构域在嗜热栖热菌体内和体外所起的作用,我们获得了S层基因(slpA)的一个突变形式(slpA.X),其中SLH结构域被删除。通过基因置换将slpA.X基因插入嗜热菌的染色体中,产生了一个突变体,该突变体表达一种主要的膜蛋白,其大小与构建预期相符(90 kDa)。通过其与单克隆抗体的差异反应,该蛋白被鉴定为slpA.X的产物。表达SlpA.X蛋白的突变体以细胞团形式生长,被一个具有三角对称性的共同外部包膜所包围,该包膜以SlpA.X蛋白为主要成分,这表明缺乏SLH的蛋白在体内无法附着于下层物质。此外,富含SlpA.X组分的平均图像显示出一种规则排列,与在没有肽聚糖的情况下野生型(SlpA)蛋白形成的排列相同。最后,我们通过蛋白质印迹法(免疫印迹)证明了SLH结构域在嗜热栖热菌HB8的S层与肽聚糖层结合中的直接作用。