Salameh Moh'd A, Wiegel Juergen
Dept. of Microbiology, University of Georgia, 1000 Cedar St., Athens, GA 30602-2605, USA.
Appl Environ Microbiol. 2007 Dec;73(23):7725-31. doi: 10.1128/AEM.01509-07. Epub 2007 Oct 12.
Two thermostable lipases were isolated and characterized from Thermosyntropha lipolytica DSM 11003, an anaerobic, thermophilic, alkali-tolerant bacterium which grows syntrophically with methanogens on lipids such as olive oil, utilizing only the liberated fatty acid moieties but not the glycerol. Lipases LipA and LipB were purified from culture supernatants to gel electrophoretic homogeneity by ammonium sulfate precipitation and hydrophobic interaction column chromatography. The apparent molecular masses of LipA and LipB determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis were 50 and 57 kDa, respectively. The temperature for maximal activity of LipA and LipB was around 96 degrees C, which is, so far as is known, the highest temperature for maximal activity among lipases, and the pH optima for growth determined at 25 degrees C (pH(25 degrees C) optima) were 9.4 and 9.6, respectively. LipA and LipB at 100 degrees C and pH(25 degrees C) 8.0 retained 50% activity after 6 and 2 h of incubation, respectively. Both enzymes exhibited high activity with long-chain fatty acid glycerides, yielding maximum activity with trioleate (C(18:1)) and, among the p-nitrophenyl esters, with p-nitrophenyl laurate. Hydrolysis of glycerol ester bonds occurred at positions 1 and 3. The activities of both lipases were totally inhibited by 10 mM phenylmethylsulfonyl fluoride and 10 mM EDTA. Metal analysis indicated that both LipA and LipB contain 1 Ca2+ and one Mn2+ ion per monomeric enzyme unit. The addition of 1 mM MnCl2 to dialyzed enzyme preparations enhanced the activities at 96 degrees C of both LipA and LipB by threefold and increased the durations of their thermal stability at 60 degrees C and 75 degrees C, respectively, by 4 h.
从嗜热脂肪合成菌DSM 11003中分离并鉴定了两种耐热脂肪酶,该菌为厌氧、嗜热、耐碱细菌,能与产甲烷菌在橄榄油等脂质上进行互营生长,仅利用释放的脂肪酸部分而不利用甘油。通过硫酸铵沉淀和疏水相互作用柱色谱法从培养上清液中纯化脂肪酶LipA和LipB至凝胶电泳均一性。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,LipA和LipB的表观分子量分别为50 kDa和57 kDa。LipA和LipB的最大活性温度约为96℃,据目前所知,这是脂肪酶中最大活性的最高温度,在25℃测定的生长最适pH值(pH(25℃)最适值)分别为9.4和9.6。LipA和LipB在100℃和pH(25℃) 8.0条件下分别孵育6小时和2小时后仍保留50%的活性。两种酶对长链脂肪酸甘油酯均表现出高活性,对三油酸甘油酯(C(18:1))产生最大活性,在对硝基苯酯中,对月桂酸对硝基苯酯产生最大活性。甘油酯键在1位和3位发生水解。两种脂肪酶的活性均被10 mM苯甲基磺酰氟和10 mM乙二胺四乙酸完全抑制。金属分析表明,每个单体酶单位的LipA和LipB均含有1个Ca2+和1个Mn^2+离子。向透析后的酶制剂中添加1 mM MnCl2可使LipA和LipB在96℃的活性提高三倍,并分别将它们在60℃和75℃的热稳定性持续时间延长4小时。