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从本地分离株中对一种新型脂肪酶进行部分纯化、表征及固定化。

Partial purification, characterization and immobilization of a novel lipase from a native isolate of .

作者信息

Fathi Foruzan, Kasra-Kermanshahi Rouha, Moosavi-Nejad Zahra, Qamsari Elahe Mobarak

机构信息

Department of Biotechnology, Faculty of Biological Sciences, Alzahra University, Tehran, Iran.

Department of Microbiology, Faculty of Biological Sciences, Alzahra University, Tehran, Iran.

出版信息

Iran J Microbiol. 2021 Dec;13(6):871-877. doi: 10.18502/ijm.v13i6.8093.

Abstract

BACKGROUND AND OBJECTIVES

Due to the widespread use of lipase enzymes in various industries, finding native lipase producing microorganisms is of great value and importance. In this study, screening of lipase-producing lactobacilli from native dairy products was performed.

MATERIALS AND METHODS

Qualitative evaluation of lipolytic activity of lipase-producing lactobacilli was performed in different media containing olive oil. A clear zone observation around the colonies indicated the lipolytic activity. The strain with the highest enzymatic activity was identified. Determination of optimal pH and temperature of lipase activity was measured by spectrophotometry using nitrophenyl acetate (-NPA) substrate. Partial purification of lipase enzyme was performed using 20-90% saturation ammonium sulfate. Eventually, lipase was immobilized by physical adsorption on chitosan beads.

RESULTS

Among screened lipolytic bacterial strains, one sample (5c isolate) which showed the highest enzymatic activity (5329.18 U/ml) was close to During characterization, the enzyme showed maximum activity in Tris-HCl buffer with pH 7, while remaining active over a temperature range of 5°C to 40°C. The results of the quantitative assay demonstrated that the fraction precipitated in ammonium sulfate at 20% saturation has the highest amount of lipolytic activity, with a specific activity of 22.0425 ± 3.6 U/mg. Purification folds and yields were calculated as 8.73 and 44%, respectively. Eventually, the enzyme was immobilized by physical adsorption on chitosan beads with a yield of 56.21%.

CONCLUSION

The high efficiency of enzyme immobilization on chitosan beads indicates the suitability of this method for long-term storage of new lipase from native 5c isolate.

摘要

背景与目的

由于脂肪酶在各行业的广泛应用,寻找产天然脂肪酶的微生物具有重要价值。本研究对本地乳制品中产脂肪酶的乳酸菌进行了筛选。

材料与方法

在含橄榄油的不同培养基中对产脂肪酶乳酸菌的脂解活性进行定性评估。菌落周围出现清晰区域表明有脂解活性。鉴定出酶活性最高的菌株。使用对硝基苯乙酸(-NPA)底物通过分光光度法测定脂肪酶活性的最佳pH和温度。用20%-90%饱和度的硫酸铵对脂肪酶进行部分纯化。最后,通过物理吸附将脂肪酶固定在壳聚糖珠上。

结果

在筛选出的脂解细菌菌株中,一个样本(5c分离株)显示出最高酶活性(5329.18 U/ml),接近 在表征过程中,该酶在pH 7的Tris-HCl缓冲液中显示出最大活性,同时在5°C至40°C的温度范围内保持活性。定量分析结果表明,在20%饱和度硫酸铵中沉淀的部分具有最高的脂解活性,比活性为22.0425±3.6 U/mg。纯化倍数和产率分别计算为8.73和44%。最后,通过物理吸附将该酶固定在壳聚糖珠上,产率为56.21%。

结论

酶固定在壳聚糖珠上的高效率表明该方法适用于长期保存来自本地5c分离株的新型脂肪酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe91/8816693/f79fc0b84704/IJM-13-871-g001.jpg

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