School of Biological Sciences, University of the Punjab, Lahore, Pakistan.
School of Biological Sciences, University of the Punjab, Lahore, Pakistan.
Int J Biol Macromol. 2024 Feb;259(Pt 2):129345. doi: 10.1016/j.ijbiomac.2024.129345. Epub 2024 Jan 12.
Genome sequence of Pyrococcus abyssi DSM25543 contains a coding sequence (PAB_RS01410) for α/β hydrolase (WP_010867387.1). Structural analysis revealed the presence of a consensus motif GXSXG and a highly conserved catalytic triad in the amino acid sequence of α/β hydrolase that were characteristic features of lysophospholipases. A putative lysophospholipase from P. abyssi with its potential applications in oil degumming and starch processing was heterologously produced in E. coli Rosetta (DE3) pLysS in soluble form followed by its purification and characterization. The recombinant enzyme was found to be active at temperature of 40-90 °C and pH 5.5-7.0. However, the enzyme exhibited its optimum activity at 65 °C and pH 6.5. None of the metal ions (Mn, Mg, Ni, Cu, Fe, Co, Zn and Ca) being tested had stimulatory effect on lysophospholipase activity. K and V for hydrolysis of 4-nitrophenyl butyrate were calculated to be 1 ± 0.089 mM and 1637 ± 24.434 U/mg, respectively. It is the first report on the soluble production and characterization of recombinant lysophospholipase from P. abyssi which exhibits its lipolytic activity in the absence of divalent metal ions. Broad substrate specificity, activity and stability at elevated temperatures make recombinant lysophospholipase an ideal candidate for potential industrial applications.
Pyrococcus abyssi DSM25543 的基因组序列包含一个编码 α/β 水解酶(WP_010867387.1)的序列(PAB_RS01410)。结构分析表明,在 α/β 水解酶的氨基酸序列中存在一个保守的基序 GXSXG 和一个高度保守的催化三联体,这是溶脂酶的特征特征。一种来自 P. abyssi 的推定溶脂酶,具有在油脱胶和淀粉加工中的潜在应用,以可溶性形式在大肠杆菌 Rosetta (DE3) pLysS 中异源产生,然后进行纯化和表征。发现重组酶在 40-90°C 和 pH 5.5-7.0 的温度下具有活性。然而,该酶在 65°C 和 pH 6.5 下表现出最佳活性。在所测试的金属离子(Mn、Mg、Ni、Cu、Fe、Co、Zn 和 Ca)中,没有一种对溶脂酶活性有刺激作用。水解 4-硝基苯丁酸的 K 和 V 值分别计算为 1±0.089mM 和 1637±24.434U/mg。这是首次报道从 P. abyssi 中可溶性生产和表征重组溶脂酶的报告,该酶在没有二价金属离子的情况下表现出脂解活性。广泛的底物特异性、在高温下的活性和稳定性使重组溶脂酶成为潜在工业应用的理想候选者。