Casiano-Colón A, Marquis R E
Department of Microbiology, University of Rochester, New York 14642.
Appl Environ Microbiol. 1988 Jun;54(6):1318-24. doi: 10.1128/aem.54.6.1318-1324.1988.
The arginine deiminase system was found to function in protecting bacterial cells against the damaging effects of acid environments. For example, as little as 2.9 mM arginine added to acidified suspensions of Streptococcus sanguis at a pH of 4.0 resulted in ammonia production and protection against killing. The arginine deiminase system was found to have unusual acid tolerance in a variety of lactic acid bacteria. For example, for Streptococcus rattus FA-1, the pH at which arginolysis was reduced to 10% of the maximum was between 2.1 and 2.6, or more than 1 full pH unit below the minimum for glycolysis (pH 3.7), and more than 2 units below the minimum for growth in complex medium (pH 4.7). The acid tolerance of the arginine deiminase system appeared to be primarily molecular and to depend on the tolerance of individual enzymes rather than on the membrane physiology of the bacteria; pH profiles for the activities of arginine deiminase, ornithine carbamoyltransferase, and carbamate kinase in permeabilized cells showed that the enzymes were active at pHs of 3.1 or somewhat lower. Overall, it appeared that ammonia could be produced from arginine at low pH values, even by cells with damaged membranes, and that the ammonia could then protect the cells against acid damage until the environmental pH value rose sufficiently to allow for the reestablishment of a difference in pH (delta pH) across the cell membrane.
精氨酸脱亚胺酶系统被发现可保护细菌细胞免受酸性环境的破坏作用。例如,向pH值为4.0的血链球菌酸化悬液中添加低至2.9 mM的精氨酸,会导致氨的产生并起到保护作用使其免受杀灭。精氨酸脱亚胺酶系统在多种乳酸菌中具有异常的耐酸性。例如,对于大鼠链球菌FA-1,精氨酸分解降至最大值的10%时的pH值在2.1至2.6之间,比糖酵解的最低pH值(3.7)低超过1个完整pH单位,比在复合培养基中生长的最低pH值(4.7)低超过2个单位。精氨酸脱亚胺酶系统的耐酸性似乎主要是分子层面的,取决于各个酶的耐受性,而非细菌的膜生理学;通透细胞中精氨酸脱亚胺酶、鸟氨酸氨甲酰转移酶和氨基甲酸激酶活性的pH曲线表明,这些酶在pH值为3.1或更低时仍有活性。总体而言,似乎即使是细胞膜受损的细胞,在低pH值下也能从精氨酸产生氨,然后氨可以保护细胞免受酸损伤,直到环境pH值上升到足以使细胞膜两侧重新建立pH差值(ΔpH)。