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首页> 外文期刊>Extremophiles >Thermostable lipases from the extreme thermophilic anaerobic bacteria Thermoanaerobacter thermohydrosulfuricus SOL1 and Caldanaerobacter subterraneus subsp. tengcongensis
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Thermostable lipases from the extreme thermophilic anaerobic bacteria Thermoanaerobacter thermohydrosulfuricus SOL1 and Caldanaerobacter subterraneus subsp. tengcongensis

机译:来自极端嗜热厌氧细菌的嗜热脂肪酶嗜热厌氧细菌thermohydrosulfuricus SOL1和Caldanaerobacter subterraneus subsp。腾聪

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摘要

Two novel genes encoding for heat and solvent stable lipases from strictly anaerobic extreme thermophilic bacteria Thermoanaerobacter thermohydrosulfuricus (LipTth) and Caldanaerobacter subterraneus subsp. tengcongensis (LipCst) were successfully cloned and expressed in E. coli. Recombinant proteins were purified to homogeneity by heat precipitation, hydrophobic interaction, and gel filtration chromatography. Unlike the enzymes from mesophile counterparts, enzymatic activity was measured at a broad temperature and pH range, between 40 and 90°C and between pH 6.5 and 10; the half-life of the enzymes at 75°C and pH 8.0 was 48 h. Inhibition was observed with 4-(2-aminoethyl)-benzenesulfonyl fluoride hydrochloride and phenylmethylsulfonylfluorid indicating that serine and thiol groups play a role in the active site of the enzymes. Gene sequence comparisons indicated very low identity to already described lipases from mesophilic and psychrophilic microorganisms. By optimal cultivation of E. coli Tuner (DE3) cells in 2-l bioreactors, a massive production of the recombinant lipases was achieved (53–2200 U/l) Unlike known lipases, the purified robust proteins are resistant against a large number of organic solvents (up to 99%) and detergents, and show activity toward a broad range of substrates, including triacylglycerols, monoacylglycerols, esters of secondary alcohols, and p-nitrophenyl esters. Furthermore, the enzyme from T. thermohydrosulfuricus is suitable for the production of optically pure compounds since it is highly S-stereoselective toward esters of secondary alcohols. The observed E values for but-3-yn-2-ol butyrate and but-3-yn-2-ol acetate of 21 and 16, respectively, make these enzymes ideal candidates for kinetic resolution of synthetically useful compounds.
机译:严格厌氧的极端嗜热细菌Thermoanaerobacter thermohydrosulfuricus(LipTth)和地下Caldanaerobacter subterraneus subsp的两个编码热和溶剂稳定脂肪酶的新基因。 tengcongensis(LipCst)已成功克隆并在大肠杆菌中表达。通过热沉淀,疏水相互作用和凝胶过滤色谱将重组蛋白纯化至均质。与嗜温菌对应的酶不同,在40至90°C和6.5至10的宽温度和pH范围内测量酶活性。酶在75°C和pH 8.0的半衰期为48小时。观察到4-(2-氨基乙基)-苯磺酰氟盐酸盐和苯基甲基磺酰氟的抑制作用,表明丝氨酸和巯基在酶的活性位点中起作用。基因序列比较表明与已经描述的嗜温和嗜温微生物的脂肪酶的同源性很低。通过在2-l生物反应器中优化培养E. coli Tuner(DE3)细胞,可以大量生产重组脂肪酶(53–2200 U / l)。与已知的脂肪酶不同,纯化的健壮蛋白可抵抗大量的有机溶剂(高达99%)和去污剂,并且对多种底物均具有活性,包括三酰基甘油,单酰基甘油,仲醇的酯和对硝基苯基酯。此外,得自热氢硫杆菌的酶适合于生产光学纯的化合物,因为它对仲醇的酯具有高度的S-立体选择性。丁酸丁-3-炔-2-醇酯和丁酸丁-3-炔-2-醇酯的E值分别为21和16,这使这些酶成为合成有用化合物动力学拆分的理想候选物。

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