Puziss M, Howard M B
J Bacteriol. 1963 Jan;85(1):237-43. doi: 10.1128/jb.85.1.237-243.1963.
Puziss, Milton (Fort Detrick, Frederick, Md.) and Mary B. Howard. Studies on immunity in anthrax. XI. Control of cellular permeability by bicarbonate ion in relation to protective antigen elaboration. J. Bacteriol. 85:237-243. 1963.-No elaboration of Bacillus anthracis protective antigen was demonstrated after addition of bicarbonate to cultures incubated 42 hr in a bicarbonate-free medium. Antigen accumulation in culture filtrates was greater if the bicarbonate was added to these cultures early in the growth period. Cell-free extracts of washed cell suspensions, prepared by hand grinding or lysozyme treatment, had no demonstrable intracellular protective antigen. Sonic treatment released antigen in measurable amounts, but tended to destroy or degrade the labile antigen. Freezing and thawing disrupted the cells and liberated the antigen; protective antigen was shown to be of internal rather than of extracellular origin. Maximal intracellular antigen concentration occurred before the peak concentration was reached in the culture filtrates. Antigen also was found in cell extracts from bicarbonate-free culture media when none was present in the corresponding culture filtrates. A high level of internal protective antigen was present in cells grown in a bicarbonate-free medium maintained at a constantly alkaline pH; only a trace of antigen was present in the corresponding pH-adjusted culture filtrate. The hypothesis is presented that bicarbonate functions to control cellular permeability and release of antigen from the cells into the ambient medium.
普齐斯,米尔顿(马里兰州弗雷德里克市迪特里克堡)和玛丽·B·霍华德。炭疽免疫研究。十一。碳酸氢根离子对细胞通透性的控制与保护性抗原的产生。《细菌学杂志》85:237 - 243。1963年。——在不含碳酸氢根的培养基中培养42小时后添加碳酸氢根,未发现炭疽芽孢杆菌保护性抗原的产生。如果在生长早期向这些培养物中添加碳酸氢根,培养滤液中的抗原积累会更多。通过手工研磨或溶菌酶处理制备的洗涤细胞悬液的无细胞提取物中,未检测到可证明的细胞内保护性抗原。超声处理释放出可测量量的抗原,但往往会破坏或降解不稳定的抗原。冻融破坏细胞并释放抗原;保护性抗原显示为细胞内源性而非细胞外源性。细胞内抗原浓度最高值出现在培养滤液中达到峰值浓度之前。当相应的培养滤液中不存在抗原时,在不含碳酸氢根的培养基的细胞提取物中也发现了抗原。在持续保持碱性pH值的不含碳酸氢根的培养基中生长的细胞中存在高水平的细胞内保护性抗原;在相应的pH调节后的培养滤液中仅存在微量抗原。提出的假说为:碳酸氢根的作用是控制细胞通透性以及抗原从细胞释放到周围培养基中。