来自嗜麦芽寡养单胞菌Psi-1的一种新型耐热脂肪酶(LipSm)的分子、生化和动力学分析(XVIII)。

IF 1.9 3区 生物学 Q2 BIOLOGY Journal of Biological Research-Thessaloniki Pub Date : 2018-02-08 eCollection Date: 2018-12-01 DOI:10.1186/s40709-018-0074-6
Maria Parapouli, Athanasios Foukis, Panagiota-Yiolanda Stergiou, Maria Koukouritaki, Panagiotis Magklaras, Olga A Gkini, Emmanuel M Papamichael, Amalia-Sofia Afendra, Efstathios Hatziloukas
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引用次数: 18

摘要

背景:微生物脂肪酶催化广泛的反应,是具有重要生物技术意义的酶。本研究的重点是分离新的脂肪酶基因,旨在发现新的脂肪酶,其产物具有有趣的生化和结构特征,并可能在工业应用中作为有价值的生物催化剂。结果:从一株来自希腊Psittaleia污泥样品的嗜麦芽窄养单胞菌Psi-1中克隆出了一个新的脂肪酶基因lipSm。lipSm在大肠杆菌BL21(DE3)中进一步过表达,并纯化了过表达酶lipSm,并对其生化和动力学性质进行了分析。LipSm的计算机分析显示,它在分类上与来自不同属的几种未表征的脂肪酶相关,构成了一个独特的分支,与所有其他先前描述的细菌脂肪酶家族明显不同。该分支的所有成员都表现出相同的、保守的一致序列基序,即催化三元组(S、D、H)和一个在细菌脂肪酶中不寻常的y型氧阴离子空穴。3d建模揭示了一个盖子结构域的存在,这使得LipSm可以在没有界面激活的情况下作用于小酯底物。此外,LipSm中丙氨酸残基的高比例以及AXXXA基序的9次出现表明它是一种耐热性脂肪酶,这一特征在实验中得到了证实,因为LipSm在70°C加热30分钟后仍然具有活性。结论:LipSm的系统发育分析表明,建立了一个新的细菌脂肪酶家族(XVIII), LipSm是其第一个被表征的成员。此外,LipSm是亲碱的,耐热的,当使用小底物时不需要界面活化。这些特性使LipSm在工业和生物技术领域具有潜在的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Molecular, biochemical and kinetic analysis of a novel, thermostable lipase (LipSm) from Stenotrophomonas maltophilia Psi-1, the first member of a new bacterial lipase family (XVIII).

Background: Microbial lipases catalyze a broad spectrum of reactions and are enzymes of considerable biotechnological interest. The focus of this study was the isolation of new lipase genes, intending to discover novel lipases whose products bear interesting biochemical and structural features and may have a potential to act as valuable biocatalysts in industrial applications.

Results: A novel lipase gene (lipSm), from a new environmental Stenotrophomonas maltophilia strain, Psi-1, originating from a sludge sample from Psittaleia (Greece), was cloned and sequenced. lipSm was further overexpressed in E. coli BL21(DE3) and the overproduced enzyme LipSm was purified and analyzed in respect to its biochemical and kinetic properties. In silico analysis of LipSm revealed that it is taxonomically related to several uncharacterized lipases from different genera, which constitute a unique clade, markedly different from all other previously described bacterial lipase families. All members of this clade displayed identical, conserved consensus sequence motifs, i.e. the catalytic triad (S, D, H), and an unusual, amongst bacterial lipases, Y-type oxyanion hole. 3D-modeling revealed the presence of a lid domain structure, which allows LipSm to act on small ester substrates without interfacial activation. In addition, the high percentage of alanine residues along with the occurrence of the AXXXA motif nine times in LipSm suggest that it is a thermostable lipase, a feature verified experimentally, since LipSm was still active after heating at 70 °C for 30 min.

Conclusions: The phylogenetic analysis of LipSm suggests the establishment of a new bacterial lipase family (XVIII) with LipSm being its first characterized member. Furthermore, LipSm is alkaliphilic, thermostable and lacks the requirement for interfacial activation, when small substrates are used. These properties make LipSm a potential advantageous biocatalyst in industry and biotechnology.

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来源期刊
CiteScore
5.20
自引率
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期刊介绍: Journal of Biological Research-Thessaloniki is a peer-reviewed, open access, international journal that publishes articles providing novel insights into the major fields of biology. Topics covered in Journal of Biological Research-Thessaloniki include, but are not limited to: molecular biology, cytology, genetics, evolutionary biology, morphology, development and differentiation, taxonomy, bioinformatics, physiology, marine biology, behaviour, ecology and conservation.
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