Key Laboratory of Microbiological Engineering of Agricultural Environment, Ministry of Agriculture, College of Life Sciences, Nanjing Agricultural University, 6 Tongwei Road, Nanjing, Jiangsu, People's Republic of China.
Appl Microbiol Biotechnol. 2012 May;94(4):1007-18. doi: 10.1007/s00253-011-3704-6. Epub 2011 Nov 19.
A novel amidase gene, designated pamh, was cloned from Paracoccus sp. M-1. Site-directed mutagenesis and bioinformatic analysis showed that the PamH protein belonged to the amidase signature enzyme family. PamH was expressed in Escherichia coli, purified, and characterized. The molecular mass of PamH was determined to be 52 kDa with an isoelectric point of 5.13. PamH displayed its highest enzymatic activity at 45°C and at pH 8.0 and was stable within a pH range of 5.0-10.0. The PamH enzyme exhibited amidase activity, aryl acylamidase activity, and acyl transferase activity, allowing it to function across a very broad substrate spectrum. PamH was highly active on aromatic and short-chain aliphatic amides (benzamide and propionamide), moderately active on amino acid amides, and possessed weak urease activity. Of the anilides examined, only propanil was a good substrate for PamH. For propanil, the k (cat) and K (m) were 2.8 s(-1) and 158 μM, respectively, and the catalytic efficiency value (k (cat)/K (m)) was 0.018 μM(-1) s(-1). In addition, PamH was able to catalyze the acyl transfer reaction to hydroxylamine for both amide and anilide substrates, including acetamide, propanil, and 4-nitroacetanilide; the highest reaction rate was shown with isobutyramide. These characteristics make PamH an excellent candidate for environmental remediation and an important enzyme for the biosynthesis of novel amides.
一种新型酰胺酶基因,命名为 pamh,从 Paracoccus sp. M-1 中克隆得到。定点突变和生物信息学分析表明,PamH 蛋白属于酰胺酶特征酶家族。PamH 在大肠杆菌中表达、纯化并进行了表征。PamH 的分子量为 52 kDa,等电点为 5.13。PamH 在 45°C 和 pH 8.0 时表现出最高的酶活性,在 pH 5.0-10.0 范围内稳定。PamH 酶具有酰胺酶活性、芳基酰基酰胺酶活性和酰基转移酶活性,使其能够在非常广泛的底物谱中发挥作用。PamH 对芳香族和短链脂肪族酰胺(苯甲酰胺和丙酰胺)具有高活性,对氨基酸酰胺具有中等活性,并且具有较弱的脲酶活性。在所研究的酰苯胺中,只有丙草胺是 PamH 的良好底物。对于丙草胺,k (cat) 和 K (m) 分别为 2.8 s(-1) 和 158 μM,催化效率值(k (cat)/K (m))为 0.018 μM(-1) s(-1)。此外,PamH 能够催化酰胺和酰苯胺底物的酰基转移反应生成羟胺,包括乙酰胺、丙草胺和 4-硝基乙酰胺;以异丁酰胺的反应速率最高。这些特性使 PamH 成为环境修复的理想候选物,也是新型酰胺生物合成的重要酶。