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嗜热真菌几丁质酶的纯化与性质研究

Purification and characterization of chitinase produced by thermophilic fungi .

机构信息

Department of Biotechnology, National Institute of Technology, Raipur, India.

出版信息

Prep Biochem Biotechnol. 2022;52(9):1087-1095. doi: 10.1080/10826068.2022.2028639. Epub 2022 Feb 3.

DOI:10.1080/10826068.2022.2028639
PMID:35112660
Abstract

BACKGROUND

In the past few years, the production of shrimp shell waste from the seafood processing industries has confronted a significant surge. Furthermore, insignificant dumping of waste has dangerous effects on both nature and human well-being. This marine waste contains a huge quantity of chitin which has several applications in different fields. The chitinase enzyme can achieve degradation of chitin, and the chitin itself can be used as the substrate as well for production of chitinase. In the current study, the chitinase enzyme was produced by . The extracellular chitinase was purified from crude extract using ammonium sulfate precipitation followed by DEAE-cellulose ion-exchange chromatography and Sephadex G-100 gel filtration chromatography. The stability and activity of chitinase with different pH, temperature, different times for a reaction, in the presence of different metal ions, and different concentration of enzyme and substrate were analyzed.

RESULT

The chitinase activity was found to be highest at pH 6.5, 50 °C, and 60 min after the reaction began. and the chitinase showed the highest activity and stability in the presence of β-mercaptoethanol (ME). The SDS-PAGE of denatured purified chitinase showed a protein band of 18 kDa.

CONCLUSION

The characterization study concludes that Cu, Hg, and EDTA have an inhibitory effect on chitinase activity, whereas β-ME acts as an activator for chitinase activity. The utilization of chitin to produce chitinase and the degradation of chitin using that chitinase enzyme would be an opportunity for bioremediation of shrimp shell waste.

摘要

背景

在过去的几年中,海鲜加工行业产生的虾壳废物大量增加。此外,这种废物的随意倾倒对自然和人类健康都有危险的影响。这种海洋废物中含有大量的几丁质,几丁质在许多领域都有应用。几丁质酶可以实现几丁质的降解,而几丁质本身也可以作为生产几丁质酶的底物。在本研究中,利用 生产了几丁质酶。通过硫酸铵沉淀、DEAE-纤维素离子交换层析和 Sephadex G-100 凝胶过滤层析从粗提物中纯化了胞外几丁质酶。分析了不同 pH 值、温度、反应时间、不同金属离子以及不同酶和底物浓度下几丁质酶的稳定性和活性。

结果

发现几丁质酶的活性在 pH 6.5、50°C 和反应开始后 60 分钟时最高。β-巯基乙醇 (ME) 的存在使几丁质酶表现出最高的活性和稳定性。变性纯化几丁质酶的 SDS-PAGE 显示出 18 kDa 的蛋白质条带。

结论

特性研究表明,Cu、Hg 和 EDTA 对几丁质酶活性有抑制作用,而 β-ME 对几丁质酶活性有激活作用。利用几丁质生产几丁质酶,并利用该几丁质酶降解几丁质,将为虾壳废物的生物修复提供机会。

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