Pedrique M, Castillo F J
Appl Environ Microbiol. 1982 Feb;43(2):303-10. doi: 10.1128/aem.43.2.303-310.1982.
Regulation of lactose (beta-D-galactosidase) synthesis in the lactose-utilizing yeast Candida pseudotropicalis was studied. The enzyme was inducible by lactose and galactose. When grown on these sugars the enzyme level of the yeast was 20 times or higher than when grown on glycerol. The Km and optimal pH were similar for the lactase induced either by lactose or galactose. The hydrolysis of o-nitrophenyl-beta-D-galactopyranoside by the lactase was inhibited by galactose and several analogs and galactosides, but not by glucose. Lactose uptake activity observed in lactose-grown cells was very reduced in cells grown on glucose or galactose. Glucose repressed the induction of lactase, but not the metabolic system for galactose utilization. In continuous culture on lactose medium at dilution rates below 0.2 h-1 the specific lactase activity was higher than in batch cultures and decreased with increases in dilution rate. Lactase was induced by pulses of lactose and galactose in cells growing on glucose, but only at low dilution rates were the steady-state concentration of glucose was very low.
对利用乳糖的假热带念珠菌中乳糖(β-D-半乳糖苷酶)合成的调控进行了研究。该酶可被乳糖和半乳糖诱导。当在这些糖类上生长时,酵母的酶水平比在甘油上生长时高20倍或更高。乳糖或半乳糖诱导的乳糖酶的Km和最佳pH值相似。乳糖酶对邻硝基苯基-β-D-吡喃半乳糖苷的水解受到半乳糖及几种类似物和半乳糖苷的抑制,但不受葡萄糖的抑制。在以乳糖生长的细胞中观察到的乳糖摄取活性在以葡萄糖或半乳糖生长的细胞中大大降低。葡萄糖抑制乳糖酶的诱导,但不抑制半乳糖利用的代谢系统。在乳糖培养基上以低于0.2 h-1的稀释率进行连续培养时,比乳糖酶活性高于分批培养,并随稀释率的增加而降低。在以葡萄糖生长的细胞中,乳糖和半乳糖脉冲可诱导乳糖酶,但只有在低稀释率下,葡萄糖的稳态浓度才非常低。