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利用优化信号肽增强蔗糖异构酶的胞外生产及特性研究

Enhanced Extracellular Production and Characterization of Sucrose Isomerase in with Optimized Signal Peptides.

作者信息

Guo Dan, Li Mingyu, Jiang Mengtong, Cong Guilong, Liu Yuxin, Wang Conggang, Li Xianzhen

机构信息

School of Biological Engineering, Dalian Polytechnic University, Dalian 116034, China.

出版信息

Foods. 2022 Aug 16;11(16):2468. doi: 10.3390/foods11162468.

Abstract

Sucrose isomerase (SIase) catalyzes the hydrolysis and isomerization of sucrose into isomaltulose, which is an important functional sugar widely used in the food industry. However, the lack of safe and efficient expression systems for recombinant SIase has impeded its production and application. In this study, enhanced expression of a SIase from sp. LX3 (referred to as KsLX3-SIase) was achieved in WB800N, by optimizing the signal peptides. First, 13 candidate signal peptides were selected using a semi-rational approach, and their effects on KsLX3-SIase secretion were compared. The signal peptide WapA was most efficient in directing the secretion of KsLX3-SIase into the culture medium, producing a specific activity of 23.0 U/mL, as demonstrated by shake flask culture. Using a fed-batch strategy, the activity of KsLX3-SIase in the culture medium was increased to 125.0 U/mL in a 5-L fermentor. Finally, the expressed KsLX3-SIase was purified and was found to have maximum activity at 45 °C and pH 5.5. Its for sucrose was 267.6 ± 18.6 mmol/L, and its / was 10.1 ± 0.2 smM. These findings demonstrated an efficient expression of SIase in and this is thought to be the highest level of SIase produced in a food-grade bacteria to date.

摘要

蔗糖异构酶(SIase)催化蔗糖水解并异构化为异麦芽酮糖,异麦芽酮糖是一种重要的功能性糖,广泛应用于食品工业。然而,缺乏用于重组SIase的安全高效表达系统阻碍了其生产和应用。在本研究中,通过优化信号肽,在WB800N中实现了来自sp. LX3的SIase(称为KsLX3-SIase)的增强表达。首先,采用半理性方法选择了13种候选信号肽,并比较了它们对KsLX3-SIase分泌的影响。如摇瓶培养所示,信号肽WapA在将KsLX3-SIase分泌到培养基中最为有效,产生的比活性为23.0 U/mL。采用补料分批策略,在5-L发酵罐中,培养基中KsLX3-SIase的活性提高到125.0 U/mL。最后,对表达的KsLX3-SIase进行纯化,发现其在45℃和pH 5.5时具有最大活性。其对蔗糖的Km为267.6±18.6 mmol/L,其kcat/Km为10.1±0.2 s mM。这些发现证明了SIase在[具体宿主菌名称未给出]中的高效表达,这被认为是迄今为止在食品级细菌中产生的SIase的最高水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4215/9407248/81bf84cd1123/foods-11-02468-g001.jpg

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