Schäfer A, Geis A, Neve H, Teuber M
Institute of Microbiology, Federal Dairy Research Center, Kiel, F.R.G.
FEMS Microbiol Lett. 1991 Feb;62(1):69-73. doi: 10.1016/0378-1097(91)90257-b.
Bacteriophage P008 revealed irreversible and uniform adsorption to cell walls of L. lactis subsp. 'diacetylactis' F7/2, whereas phage P127 adsorbed reversibly to a limited number of receptor sites on cell walls of L. lactis subsp. cremoris Wg2-1. Neither extraction of lipids, cell wall- and membrane-teichoic acids nor enzymatic degradation of proteins altered the binding efficiencies of both cell wall fractions. However, phage binding was inhibited, when cell walls were subjected to lysozyme, metaperiodate, or acid treatments. This reflects that a carbohydrate component embedded in the peptidoglycan matrix is part of the phage receptors of strains F7/2 and Wg2-1.
噬菌体P008对乳酸乳球菌亚种“双乙酰乳球菌”F7/2的细胞壁表现出不可逆且均匀的吸附,而噬菌体P127则可逆地吸附到乳酸乳球菌亚种乳脂乳球菌Wg2-1细胞壁上有限数量的受体位点。脂质、细胞壁和膜磷壁酸的提取以及蛋白质的酶促降解均未改变两种细胞壁组分的结合效率。然而,当细胞壁经过溶菌酶、偏高碘酸盐或酸处理时,噬菌体的结合受到抑制。这表明嵌入肽聚糖基质中的碳水化合物成分是菌株F7/2和Wg2-1噬菌体受体的一部分。