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基于地芽孢杆菌脂肪酶和酯酶的融合脂肪酶生物催化剂中各个结构域功能的研究。

Study of individual domains' functionality in fused lipolytic biocatalysts based on Geobacillus lipases and esterases.

机构信息

Institute of Biosciences, Life Sciences Center, Vilnius University, Sauletekis avenue 7, LT-10257 Vilnius, Lithuania.

Institute of Biochemistry, Life Sciences Center, Vilnius University, Sauletekis avenue 7, LT-10257 Vilnius, Lithuania.

出版信息

Int J Biol Macromol. 2021 Jan 31;168:261-271. doi: 10.1016/j.ijbiomac.2020.12.026. Epub 2020 Dec 8.

DOI:10.1016/j.ijbiomac.2020.12.026
PMID:33301847
Abstract

The prospects of industrial uses of microbial enzymes have increased greatly during the 21st century. Fused lipolytic enzymes (where one or both fused domains possess lipolytic activity) is a rapidly growing group of industrial biocatalysts. However, the most effective fusion strategy, catalytic behavior of each domain and influence of added linkers on physicochemical and kinetic characteristics of such biocatalysts has not been yet explored. In this study the functionality of individual domains in fused lipolytic enzymes, while using GDEst-lip, GDLip-lip and GDEst-est enzymes as a model system, is analyzed for the first time. Analysis of mutant GDEst-lip, GDLip-lip and GDEst-est variants, where one domain is inactive, showed that both domains retained their activity, although the reduction in specific activity of individual domains has been detected. Moreover, experimental data proposed that the N-terminal domain mostly influenced the thermostability, while the C-terminal domain was responsible for thermal activity. GDEst-lip variants fused by using rigid (EAAELAAE) and flexible (GGSELSGG) linkers indicated that a unique restriction site or a rigid linker is the most preferable fusion strategy to develop new chimeric biocatalysts with domains of Geobacillus lipolytic enzymes.

摘要

在 21 世纪,微生物酶在工业用途上的前景大大增加。融合脂肪酶(其中一个或两个融合结构域具有脂肪酶活性)是一类快速发展的工业生物催化剂。然而,最有效的融合策略、每个结构域的催化行为以及添加的连接子对这类生物催化剂的物理化学和动力学特性的影响尚未得到探索。在这项研究中,首次分析了融合脂肪酶中各个结构域的功能,使用 GDEst-lip、GDLip-lip 和 GDEst-est 酶作为模型系统。分析具有一个结构域失活的突变体 GDEst-lip、GDLip-lip 和 GDEst-est 变体表明,两个结构域都保留了它们的活性,尽管检测到了单个结构域比活的降低。此外,实验数据表明,N 端结构域主要影响热稳定性,而 C 端结构域负责热活性。使用刚性(EAAELAAE)和柔性(GGSELSGG)连接子融合的 GDEst-lip 变体表明,独特的限制位点或刚性连接子是开发具有解脂芽孢杆菌脂肪酶结构域的新型嵌合生物催化剂的最优选融合策略。

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