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Extremely Stable and Versatile Carboxylesterase from a Hyperthermophilic Archaeon

机译:来自超嗜热古细菌的极其稳定和多功能的羧酸酯酶

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We have found that the hyperthermophilic archaeon Pyrobaculum calidifontis VA1 produced a thermostable esterase. We isolated and sequenced the esterase gene (estPc) from strain VA1. estPc consisted of 939 bp, corresponding to 313 amino acid residues with a molecular mass of 34,354 Da. As estPc showed significant identity (30%) to mammalian hormone-sensitive lipases (HSLs), esterase of P. calidifontis (Est) could be regarded as a new member of the HSL family. Activity levels of the enzyme were comparable or higher than those of previously reported enzymes not only at high temperature (6,410 U/mg at 90°C), but also at ambient temperature (1,050 U/mg at 30°C). The enzyme displayed extremely high thermostability and was also stable after incubation with various water-miscible organic solvents at a concentration of 80%. The enzyme also exhibited activity in the presence of organic solvents. Est of P. calidifontis showed higher hydrolytic activity towards esters with short to medium chains, with p-nitrophenyl caproate (C6) the best substrate among the p-nitrophenyl esters examined. As for the alcoholic moiety, the enzyme displayed esterase activity towards esters with both straight- and branched-chain alcohols. Most surprisingly, we found that this Est enzyme hydrolyzed the tertiary alcohol ester tert-butyl acetate, a feature very rare among previously reported lipolytic enzymes. The extreme stability against heat and organic solvents, along with its activity towards a tertiary alcohol ester, indicates a high potential for the Est of P. calidifontis in future applications.
机译:我们已经发现,超嗜热古菌Pyrobaculum calidifontis VA1产生了热稳定的酯酶。我们从菌株VA1中分离并测序了酯酶基因(estPc)。 estPc由939 bp组成,对应于313个氨基酸残基,分子量为34354 Da。由于estPc与哺乳动物激素敏感性脂肪酶(HSLs)具有显着同一性(30%),因此P. calidifontis(Est)的酯酶可被视为HSL家族的新成员。该酶的活性水平不仅在高温下(90°C下为6,410 U / mg),而且在环境温度下(30°C下为1,050 U / mg)均与以前报道的酶相当或更高。该酶显示出极高的热稳定性,并且在与浓度为80%的与水混溶的有机溶剂中孵育后也很稳定。该酶在有机溶剂存在下也表现出活性。 Calidifontis的Est显示对短至中链的酯具有更高的水解活性,对己酸对硝基苯酯(C6)在所考察的对硝基苯酯中是最好的底物。至于醇部分,该酶对直链和支链醇都显示出对酯的酯酶活性。最令人惊讶的是,我们发现该Est酶水解了叔醇酯乙酸叔丁酯,这在以前报道的脂解酶中非常罕见。对热和有机溶剂的极高稳定性,以及对叔醇酯的活性,表明在未来的应用中,P。calidifontis的Est具有很高的潜力。

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