GINSBURG I, BENTWICH Z, HARRIS T N
J Exp Med. 1965 Apr 1;121(4):633-45. doi: 10.1084/jem.121.4.633.
The relationship of the streptococcal hemolysin which is recognized on incubation of RBC with streptococcal cells (cell-bound hemolysin, CBH), to RNA hemolysin, a representative of oxygen-stable hemolysin (streptolysin S) has been studied. A number of similarities have been found in the conditions for optimal production of each of these hemolysins, a requirement for cysteine, Mg(++), and glucose; maximal production by streptococci in the stationary phase; similar curves of pH-dependence. In both systems, the production of hemolysin was inhibited by certain antibiotics, by ultraviolet irradiation, and by sonic disruption and was absent in the same streptococcal mutant strain. The hemolytic activity of both systems was inhibited by lecithin, trypan blue, and papain. Similarities were also found in relative susceptibilities to the two hemolytic systems of erythrocytes of a number of animal species. These data support a suggestion advanced in an earlier study that a streptococcal hemolytic moiety, which can be induced by, and carried on, a number of diverse agents to comprise the group of oxygen-stable hemolysins, serves, in its original attachment to a component of the streptococcal cell, to produce the hemolytic effect recognized as the cell-bound hemolysin.
通过将红细胞与链球菌细胞一起孵育而识别出的链球菌溶血素(细胞结合溶血素,CBH)与氧稳定溶血素(链球菌溶血素S)的代表RNA溶血素之间的关系已得到研究。在这些溶血素各自的最佳产生条件方面发现了许多相似之处,即对半胱氨酸、Mg(++)和葡萄糖的需求;链球菌在稳定期的最大产量;相似的pH依赖性曲线。在这两个系统中,溶血素的产生都受到某些抗生素、紫外线照射和超声破碎的抑制,并且在同一链球菌突变株中不存在。这两个系统的溶血活性都受到卵磷脂、台盼蓝和木瓜蛋白酶的抑制。在对多种动物物种红细胞的两种溶血系统的相对敏感性方面也发现了相似之处。这些数据支持了早期一项研究所提出的建议,即一种链球菌溶血部分,它可以由多种不同的因子诱导并携带,构成氧稳定溶血素组,在其最初附着于链球菌细胞的一个成分时,产生被认为是细胞结合溶血素的溶血效应。