Karlsson Sture, Burman Lars G, Åkerlund Thomas
Microbiology and Tumourbiology Center, Karolinska Institute, S-17177 Stockholm, Sweden.
Department of Bacteriology, Swedish Institute for Infectious Disease Control, S-17182 Solna, Sweden.
Microbiology (Reading). 1999 Jul;145 ( Pt 7):1683-1693. doi: 10.1099/13500872-145-7-1683.
The impact of various growth conditions on the expression of toxins and other proteins by Clostridium difficile VPI 10463 was studied. During non-starved conditions, the rate of toxin synthesis paralleled that of total protein during both exponential growth and stationary phase, and in both defined and complex media. Biotin limitation reduced growth rate and bulk protein synthesis, whereas toxin expression continued, leading to a 50- to 200-fold increase in intracellular toxin levels. Concomitantly, several 22 kDa proteins were up-regulated as revealed by two-dimensional PAGE analysis. The toxin yield was 30-fold higher in peptone yeast extract (PY) than in PY containing glucose (PYG). By contrast, glucose limitation reduced toxin yields by 20- to 100-fold in defined media. By elevating the buffering capacity and bicarbonate concentration, toxin yields were increased by 10-fold in PY and PYG. The high toxin production by C. difficile during growth in PY was lowered 100-fold by adding a blend of nine amino acids and several 60-100 kDa proteins were concomitantly down-regulated. It was concluded that toxin expression in C. difficile VPI 10463 was not affected by growth rate, growth phase, catabolite repression or the stringent response. Instead the co-expression of toxins and a few specific additional proteins appeared to be influenced by metabolic pathways involving CO2 assimilation, carboxylation reactions and metabolism of certain amino acids.
研究了多种生长条件对艰难梭菌VPI 10463毒素及其他蛋白质表达的影响。在非饥饿条件下,无论是在指数生长期还是稳定期,无论是在限定培养基还是复合培养基中,毒素合成速率均与总蛋白合成速率平行。生物素限制降低了生长速率和总蛋白合成,而毒素表达仍在继续,导致细胞内毒素水平增加了50至200倍。同时,二维聚丙烯酰胺凝胶电泳分析显示,几种22 kDa的蛋白质上调。在蛋白胨酵母提取物(PY)中,毒素产量比含葡萄糖的PY(PYG)高30倍。相比之下,在限定培养基中,葡萄糖限制使毒素产量降低了20至100倍。通过提高缓冲能力和碳酸氢盐浓度,PY和PYG中的毒素产量增加了10倍。在PY中生长期间,艰难梭菌的高毒素产量通过添加九种氨基酸的混合物降低了100倍,同时几种60 - 100 kDa的蛋白质下调。得出的结论是,艰难梭菌VPI 10463中的毒素表达不受生长速率、生长阶段、分解代谢物阻遏或严紧反应的影响。相反,毒素与一些特定的其他蛋白质的共表达似乎受涉及二氧化碳同化、羧化反应和某些氨基酸代谢的代谢途径影响。