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在黑曲霉细胞表面展示南极假丝酵母脂肪酶 B 作为一种有潜力的食品级全细胞催化剂。

Displaying Candida antarctica lipase B on the cell surface of Aspergillus niger as a potential food-grade whole-cell catalyst.

机构信息

Guangdong Key Laboratory of Fermentation and Enzyme Engineering, School of Bioscience and Bioengineering, South China University of Technology, Guangzhou, 510006, Guangdong, People's Republic of China.

出版信息

J Ind Microbiol Biotechnol. 2014 Apr;41(4):711-20. doi: 10.1007/s10295-014-1410-y. Epub 2014 Feb 12.

Abstract

Aspergillus niger is a recognized workhorse used to produce food processing enzymes because of its extraordinarily high protein-producing capacity. We have developed a new cell surface display system de novo in A. niger using expression elements from generally recognized as safe certified microorganisms. Candida antarctica lipase B (CALB), a widely used hydrolase, was fused to an endogenous cell wall mannoprotein, CwpA, and functionally displayed on the cell surface. Localization of CALB was confirmed by enzymatic assay and immunofluorescence analysis using laser scanning confocal microscopy. After induction by maltose for 45 h, the hydrolytic activity and synthesis activity of A. niger mycelium-surface displayed CALB (AN-CALB) reached 400 and 240 U/g dry cell, respectively. AN-CALB was successfully used as a whole-cell catalyst for the enzymatic production of ethyl esters from a series of fatty acids of different chain lengths and ethanol. In a solvent-free system, AN-CALB showed great synthetic activity and afforded high substrate mole conversions, which amounted to 87 % for ethyl hexanoate after 2 h, 89 % for ethyl laurate after 2 h, and 84 % for ethyl stearate after 3 h. These results suggested that CwpA can act as an efficient anchoring motif for displaying enzyme on A. niger, and AN-CALB is a robust, green, and cost-effective alternative food-grade whole-cell catalyst to commercial lipase.

摘要

黑曲霉是一种公认的生产食品加工酶的工作菌株,因为其具有极高的蛋白质生产能力。我们在黑曲霉中开发了一种新的细胞表面展示系统,该系统使用了经普遍认为安全认证的微生物的表达元件。南极假丝酵母脂肪酶 B(CALB)是一种广泛使用的水解酶,与内源性细胞壁甘露糖蛋白 CwpA 融合,并在细胞表面功能性表达。通过酶测定和激光扫描共聚焦显微镜的免疫荧光分析证实了 CALB 的定位。在麦芽糖诱导 45 h 后,黑曲霉菌丝体表面展示 CALB(AN-CALB)的水解活性和合成活性分别达到 400 和 240 U/g 干细胞。AN-CALB 成功地用作一系列不同链长脂肪酸和乙醇的酶法生产乙酯的全细胞催化剂。在无溶剂体系中,AN-CALB 表现出很高的合成活性和很高的底物摩尔转化率,2 h 后得到 87%的己酸乙酯、2 h 后得到 89%的月桂酸乙酯和 3 h 后得到 84%的硬脂酸乙酯。这些结果表明,CwpA 可以作为在黑曲霉上展示酶的有效锚定基序,并且 AN-CALB 是一种强大、绿色且具有成本效益的替代食品级全细胞催化剂,可替代商业脂肪酶。

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