Macfarlane G T, Macfarlane S
MRC Dunn Clinical Nutrition Centre, Cambridge, United Kingdom.
Appl Environ Microbiol. 1992 Apr;58(4):1195-1200. doi: 10.1128/aem.58.4.1195-1200.1992.
Extracellular protease production by Clostridium bifermentans NCTC 2914 occurred throughout the growth phase in batch culture. In both glucose-excess and -limited chemostats, protease formation was inversely related to the dilution rate, over the range D = 0.03 to 0.70 h-1. At high dilution rates (D greater than 0.25 h-1), protease activities were greatest under excess glucose conditions. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis of chemostat culture effluents showed the presence of up to 18 bands of protease activity at low dilution rates, with apparent molecular masses ranging from about 36 to 125 kDa. High-performance liquid chromatography gel filtration of culture supernatants gave four peaks of activity at 34, 42, 60, and 102 kDa. Glucose, peptone, and phosphate stimulated protease formation, but ammonia concentrations up to 10 g liter-1 had little effect on the process. Culture pH in glucose-excess chemostats strongly influenced protease synthesis, which was maximal during growth at pH 6.4. The optimal pH of protease activity was 7.0. Although a wide variety of proteins were hydrolyzed by C. bifermentans proteases, none of the enzymes were collagenolytic. Of 21 different p-nitroanilide, beta-naphthylamide, and N-carbobenzoyl substrates tested, none were hydrolyzed. With the exception of Ca2+, divalent metal ions inhibited proteolysis. Experiments with protease inhibitors demonstrated that 1 mM EDTA inhibited protease activities in culture supernatants by over 90%, indicating that the enzymes were principally of the metalloprotease type.
双发酵梭菌NCTC 2914在分批培养的整个生长阶段都能产生胞外蛋白酶。在葡萄糖过量和限量的恒化器中,在稀释率D = 0.03至0.70 h-1范围内,蛋白酶的形成与稀释率呈负相关。在高稀释率(D大于0.25 h-1)下,过量葡萄糖条件下的蛋白酶活性最高。恒化器培养流出物的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示,在低稀释率下存在多达18条蛋白酶活性带,表观分子量约为36至125 kDa。培养上清液的高效液相色谱凝胶过滤在34、42、60和102 kDa处给出了四个活性峰。葡萄糖、蛋白胨和磷酸盐刺激蛋白酶的形成,但高达10 g/L的氨浓度对该过程影响很小。葡萄糖过量的恒化器中的培养pH强烈影响蛋白酶的合成,在pH 6.4生长期间合成量最大。蛋白酶活性的最佳pH为7.0。尽管双发酵梭菌蛋白酶能水解多种蛋白质,但没有一种酶具有胶原水解活性。在测试的21种不同的对硝基苯胺、β-萘酰胺和N-苄氧羰基底物中,没有一种被水解。除Ca2+外,二价金属离子抑制蛋白水解。蛋白酶抑制剂实验表明,1 mM EDTA可使培养上清液中的蛋白酶活性抑制超过90%,表明这些酶主要是金属蛋白酶类型。