Tortosa M, Cho M I, Wilkens T J, Iacono V J, Pollock J J
Infect Immun. 1981 Jun;32(3):1261-73. doi: 10.1128/iai.32.3.1261-1273.1981.
Veillonella alcalescens subsp. dispar was grown in a synthetic medium containing either radiolabeled thymidine or uridine to monitor cell lysis by assay of the release of deoxyribonucleic acid or ribonucleic acid (RNA), respectively. Biochemical analyses demonstrated that, although human or hen egg white lysozymes alone did not release deoxyribonucleic acid or RNA, the nucleic acids were liberated in equal amounts from lysozyme-treated cells by the addition of low concentrations of the sodium salts of HCO-3, SCN-, Cl-, and F-, RNA release was dependent on enzyme and anion concentration. Human lysozyme was more potent than hen egg white lysozyme, and bicarbonate was the most effective anion in promoting bacteriolysis. Surprisingly, ultrastructural analyses differed from biochemical results. Lysozyme alone caused lysis in approximately 40% of the cell population. Detailed ultrastructural examination revealed aggregated cytoplasmic components which appeared as small clumps, explaining why nucleic acids were not measurable in the biochemical assays. In reaction mixtures containing lysozyme plus inorganic salts, electron microscopy results were compatible with biochemical data. Ultrastructural studies demonstrated that the addition of inorganic salts to lysozyme-treated cells resulted in the solubilization of the protoplasmic aggregates of lysed cells, presumably freeing the complexed RNA, and in the rapid lysis of the remaining cells (approximately 60%). These data suggest that electron microscopy must be used in conjunction with biochemical assays to assess lytic damage of bacterial cells.
产碱韦荣球菌亚种差异菌在含有放射性标记胸苷或尿苷的合成培养基中培养,分别通过检测脱氧核糖核酸(DNA)或核糖核酸(RNA)的释放来监测细胞裂解。生化分析表明,虽然单独的人或鸡蛋清溶菌酶不会释放DNA或RNA,但通过添加低浓度的HCO₃⁻、SCN⁻、Cl⁻和F⁻的钠盐,核酸会从经溶菌酶处理的细胞中以等量释放,RNA的释放取决于酶和阴离子浓度。人溶菌酶比鸡蛋清溶菌酶更有效,碳酸氢盐是促进细菌裂解最有效的阴离子。令人惊讶的是,超微结构分析结果与生化结果不同。单独的溶菌酶可使约40%的细胞群体发生裂解。详细的超微结构检查发现聚集的细胞质成分呈小团块出现,这解释了为什么在生化分析中检测不到核酸。在含有溶菌酶加无机盐的反应混合物中,电子显微镜结果与生化数据相符。超微结构研究表明,向经溶菌酶处理的细胞中添加无机盐会导致裂解细胞的原生质聚集体溶解,大概会释放出复合RNA,并使其余细胞(约60%)迅速裂解。这些数据表明,必须将电子显微镜与生化分析结合使用,以评估细菌细胞的裂解损伤。