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Isolation of a Novel Cutinase Homolog with Polyethylene Terephthalate-Degrading Activity from Leaf-Branch Compost by Using a Metagenomic Approach

机译:荟萃基因组学方法从叶分支堆肥中分离具有对苯二甲酸乙二醇酯降解活性的新型角质酶同系物

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The gene encoding a cutinase homolog, LC-cutinase, was cloned from a fosmid library of a leaf-branch compost metagenome by functional screening using tributyrin agar plates. LC-cutinase shows the highest amino acid sequence identity of 59.7% to Thermomonospora curvata lipase. It also shows the 57.4% identity to Thermobifida fusca cutinase. When LC-cutinase without a putative signal peptide was secreted to the periplasm of Escherichia coli cells with the assistance of the pelB leader sequence, more than 50% of the recombinant protein, termed LC-cutinase*, was excreted into the extracellular medium. It was purified and characterized. LC-cutinase* hydrolyzed various fatty acid monoesters with acyl chain lengths of 2 to 18, with a preference for short-chain substrates (C_(4) substrate at most) most optimally at pH 8.5 and 50°C, but could not hydrolyze olive oil. It lost activity with half-lives of 40 min at 70°C and 7 min at 80°C. LC-cutinase* had an ability to degrade poly(ε-caprolactone) and polyethylene terephthalate (PET). The specific PET-degrading activity of LC-cutinase* was determined to be 12 mg/h/mg of enzyme (2.7 mg/h/μkat of p NP-butyrate-degrading activity) at pH 8.0 and 50°C. This activity is higher than those of the bacterial and fungal cutinases reported thus far, suggesting that LC-cutinase* not only serves as a good model for understanding the molecular mechanism of PET-degrading enzyme but also is potentially applicable for surface modification and degradation of PET.
机译:通过使用三丁酸甘油酯琼脂平板进行功能筛选,从叶分支堆肥元基因组的fosmid文库克隆了编码角质酶同源物的基因LC-角质酶。 LC-角质酶显示与弯曲热单孢菌脂肪酶的最高氨基酸序列同一性为59.7%。它还显示了与Thermobifida fusca角质酶的57.4%相同性。当不带有推定信号肽的LC-角质酶在pelB前导序列的帮助下分泌到大肠杆菌的周质中时,称为LC-角质酶*的重组蛋白中有50%以上被排泄到细胞外培养基中。将其纯化并表征。 LC-角质酶*水解各种脂肪酸单酯,其酰基链长度为2至18,最优选在pH 8.5和50°C时最优选短链底物(至多为C_(4)底物),但不能水解橄榄油。它在70°C时有40分钟的半衰期,而在80°C时有7分钟的半衰期而失去了活性。 LC-角质酶*具有降解聚(ε-己内酯)和聚对苯二甲酸乙二醇酯(PET)的能力。在pH 8.0和50°C下,LC角质酶*的比PET降解活性确定为12 mg / h / mg的酶(2.7 mg / h /μkat的p NP丁酸酯降解活性)。该活性高于迄今为止报道的细菌和真菌角质酶的活性,这表明LC-角质酶*不仅可以作为了解PET降解酶分子机制的良好模型,而且还潜在地适用于其表面修饰和降解。宠物。

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