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体外和计算机分析揭示了高山芽孢杆菌 L-天冬酰胺酶的临床理想属性。

In vitro and in silico analysis unravelled clinically desirable attributes of Bacillus altitudinis L-asparaginase.

机构信息

Marine Biotechnology, Fish Nutrition and Health Division, ICAR-Central Marine Fisheries Research Institute (CMFRI), Ernakulam Kochi 682018, Kerala, India.

Cochin University of Science and Technology, Kochi 682022, Kerala, India.

出版信息

J Appl Microbiol. 2024 Mar 1;135(3). doi: 10.1093/jambio/lxae062.

Abstract

AIMS

To identify a marine L-asparaginase with clinically desirable attributes and characterize the shortlisted candidate through in silico tools.

METHODS AND RESULTS

Marine bacterial strains (number = 105) isolated from marine crabs were evaluated through a stepwise strategy incorporating the crucial attributes for therapeutic safety. The results demonstrated the potential of eight bacterial species for extracellular L-asparaginase production. However, only one isolate (Bacillus altitudinis CMFRI/Bal-2) showed clinically desirable attributes, viz. extracellular production, type-II nature, lack of concurrent L-glutaminase and urease activities, and presence of ansZ (functional gene for clinical type). The enzyme production was 22.55 ± 0.5 µM/mg protein/min within 24 h without optimization. The enzyme also showed good activity and stability in pH 7-8 and temperature 37°C, predicting the functioning inside the human body. The Michealis-Menten constant (Km) was 14.75 µM. Detailed in silico analysis based on functional gene authenticating the results of in vitro characterization and predicted the nonallergenic characteristic of the candidate. Docking results proved the higher affinity of the shortlisted candidate to L-asparagine than L-glutamine and urea.

CONCLUSION

Comprehensively, the study highlighted B. altitudinis type II asparaginase as a competent candidate for further research on clinically safe asparaginases.

摘要

目的

鉴定一种具有临床理想属性的海洋 L-天冬酰胺酶,并通过计算机模拟工具对候选酶进行特征分析。

方法与结果

从海洋蟹中分离出的海洋细菌菌株(共 105 株)通过逐步策略进行评估,该策略纳入了治疗安全性的关键属性。结果表明,有八种细菌具有产生细胞外 L-天冬酰胺酶的潜力。然而,只有一个分离株(Bacillus altitudinis CMFRI/Bal-2)表现出临床理想的属性,即细胞外产生、Ⅱ型性质、缺乏同时的 L-谷氨酰胺酶和脲酶活性以及存在 ansZ(临床Ⅱ型的功能基因)。在未优化的情况下,24 小时内酶的产量为 22.55±0.5µM/mg 蛋白/分钟。该酶在 pH7-8 和 37°C 的温度下也表现出良好的活性和稳定性,预测其在人体内的功能。米氏常数(Km)为 14.75µM。基于功能基因的详细计算机模拟分析验证了体外特征分析的结果,并预测了候选酶的非变应原特性。对接结果证明,与 L-谷氨酰胺和尿素相比,候选酶对 L-天冬酰胺具有更高的亲和力。

结论

综上所述,该研究强调了 B. altitudinis Ⅱ型天冬酰胺酶作为进一步研究临床安全天冬酰胺酶的候选酶的潜力。

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