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通过组合策略在 中高效生产海藻酸盐裂解酶:载体和宿主选择、启动子和信号肽筛选,以及翻译起始区的修饰。

Efficient Production of an Alginate Lyase in with Combined Strategy: Vector and Host Selection, Promoter and Signal Peptide Screening, and Modification of a Translation Initiation Region.

机构信息

School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, China.

International Joint Laboratory on Food Safety, Jiangnan University, Wuxi, Jiangsu 214122, China.

出版信息

J Agric Food Chem. 2024 Sep 4;72(35):19403-19412. doi: 10.1021/acs.jafc.4c03532. Epub 2024 Aug 24.

DOI:10.1021/acs.jafc.4c03532
PMID:39180506
Abstract

Alginate lyases (ALys) whose degrading products, alginate oligosaccharides, exhibit various outstanding biochemical activities have aroused increasing interest of researchers in the marine bioresource field. However, their predominant sourcing from marine bacteria, with limited yields and unclear genetic backgrounds, presents a challenge for industrial production. In this study, ALys (Aly01) from SK 42.001 was expressed in (), a nonpathogenic microorganism recognized as generally safe (GRAS). This accomplishment was realized through a comprehensive strategy involving vector and host selection, promoter and signal peptide screening, and engineering of the ribosome binding site (RBS) and the N-terminal coding sequence (NCS). The optimal combination was identified as the pP43NMK and WB600. Among the 19 reported strong promoters, P exhibited the best performance, showing intracellular enzyme activities of 4.47 U/mL. Despite expectations, dual promoter construction did not yield a significant increase. Further, SP demonstrated the highest extracellular activity (1.33 U/mL), which was further improved by RBS/NCS engineering, reaching 4.58 U/mL. Finally, after fed-batch fermentation, the extracellular activity reached 18.01 U/mL, which was the highest of ALys with a high molecular weight expressed in . These findings are expected to offer valuable insights into the heterologous expression of ALys in .

摘要

海藻酸盐裂解酶(ALys)的降解产物——海藻酸盐寡糖,具有各种出色的生化活性,这引起了海洋生物资源领域研究人员的浓厚兴趣。然而,它们主要来源于海洋细菌,产量有限且遗传背景不明确,这对工业生产提出了挑战。在本研究中,从 SK 42.001 中表达的 ALys(Aly01)被导入到()中,这是非致病性微生物,被认为是一般安全(GRAS)的。这一成就通过综合策略实现,包括载体和宿主的选择、启动子和信号肽的筛选,以及核糖体结合位点(RBS)和 N 末端编码序列(NCS)的工程改造。最佳组合被确定为 pP43NMK 和 WB600。在报道的 19 个强启动子中,P 表现出最佳性能,细胞内酶活达到 4.47 U/mL。出乎意料的是,双启动子构建并没有显著提高酶活。此外,SP 表现出最高的胞外活性(1.33 U/mL),通过 RBS/NCS 工程进一步提高,达到 4.58 U/mL。最后,经过分批补料发酵,胞外酶活达到 18.01 U/mL,这是在中表达高分子量 ALys 的最高酶活。这些发现有望为 ALys 在中的异源表达提供有价值的见解。

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