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SUMO 融合技术在提高深渊热球菌溶脂酶稳定性和活性中的应用。

Application of SUMO fusion technology for the enhancement of stability and activity of lysophospholipase from Pyrococcus abyssi.

机构信息

School of Biological Sciences, University of the Punjab, Lahore, Pakistan.

School of Biochemistry and Biotechnology, University of the Punjab, Lahore, Pakistan.

出版信息

World J Microbiol Biotechnol. 2024 May 9;40(6):183. doi: 10.1007/s11274-024-03998-w.

Abstract

Heterologous production of proteins in Escherichia coli has raised several challenges including soluble production of target proteins, high levels of expression and purification. Fusion tags can serve as the important tools to overcome these challenges. SUMO (small ubiquitin-related modifier) is one of these tags whose fusion to native protein sequence can enhance its solubility and stability. In current research, a simple, efficient and cost-effective method is being discussed for the construction of pET28a-SUMO vector. In order to improve the stability and activity of lysophospholipase from Pyrococcus abyssi (Pa-LPL), a 6xHis-SUMO tag was fused to N-terminal of Pa-LPL by using pET28a-SUMO vector. Recombinant SUMO-fused enzyme (6 H-S-PaLPL) works optimally at 35 °C and pH 6.5 with remarkable thermostability at 35-95 °C. Thermo-inactivation kinetics of 6 H-S-PaLPL were also studied at 35-95 °C with first order rate constant (k) of 5.58 × 10 h-1 and half-life of 12 ± 0 h at 95 °C. K and V for the hydrolysis of 4-nitrophenyl butyrate were calculated to be 2 ± 0.015 mM and 3882 ± 22.368 U/mg, respectively. 2.4-fold increase in V of Pa-LPL was observed after fusion of 6xHis-SUMO tag to its N-terminal. It is the first report on the utilization of SUMO fusion tag to enhance the overall stability and activity of Pa-LPL. Fusion of 6xHis-SUMO tag not only aided in the purification process but also played a crucial role in increasing the thermostability and activity of the enzyme. SUMO-fused enzyme, thus generated, can serve as an important candidate for degumming of vegetable oils at industrial scale.

摘要

在大肠杆菌中异源生产蛋白质带来了一些挑战,包括目标蛋白质的可溶性生产、高水平的表达和纯化。融合标签可以作为克服这些挑战的重要工具。SUMO(小泛素相关修饰物)就是其中之一,其与天然蛋白质序列的融合可以提高其可溶性和稳定性。在当前的研究中,正在讨论一种简单、高效和具有成本效益的方法来构建 pET28a-SUMO 载体。为了提高来自 Pyrococcus abyssi 的溶血磷脂酶(Pa-LPL)的稳定性和活性,使用 pET28a-SUMO 载体将 6xHis-SUMO 标签融合到 Pa-LPL 的 N 端。重组 SUMO 融合酶(6H-S-PaLPL)在 35°C 和 pH6.5 下最佳工作,在 35-95°C 下具有显著的热稳定性。还研究了 6H-S-PaLPL 在 35-95°C 下的热失活动力学,一级速率常数(k)为 5.58×10 h-1,半衰期为 12±0 h 在 95°C 下。计算出 4-硝基苯丁酸水解的 K 和 V 分别为 2±0.015 mM 和 3882±22.368 U/mg。将 6xHis-SUMO 标签融合到其 N 端后,Pa-LPL 的 V 增加了 2.4 倍。这是首次报道利用 SUMO 融合标签来提高 Pa-LPL 的整体稳定性和活性。6xHis-SUMO 标签的融合不仅有助于纯化过程,而且对提高酶的热稳定性和活性起着至关重要的作用。由此产生的 SUMO 融合酶可以作为在工业规模下对植物油进行脱胶的重要候选物。

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