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基因剂量以及与内质网分泌相关因子的共表达改善了α-半乳糖苷酶的分泌表达。

Gene dosage and coexpression with endoplasmic reticulum secretion-associated factors improved the secretory expression of α-galactosidase.

作者信息

Han Zheng-Gang, Zhang Ji-Wen, Jiang Xiao-Fang, Yang Jiang-Ke

机构信息

College of Biology and Pharmaceutical Engineering, Wuhan Polytechnic University, Wuhan, Hubei, 430023, China.

College of Biology and Pharmaceutical Engineering, Wuhan Polytechnic University, Wuhan, Hubei, 430023, China.

出版信息

Protein Expr Purif. 2019 Jan;153:83-91. doi: 10.1016/j.pep.2018.08.004. Epub 2018 Aug 11.

Abstract

The α-galactosidases, which can catalyze the removal of α-1,6-linked terminal galactose residues from galactooligosaccharide materials, have good potential for industrial applications. The high-level and efficient secretion of the α-galactosidases into the extracellular space has greatly simplified the downstream bioengineering process, facilitating their bioapplications. In this study, the effects of gene dosage and endoplasmic reticulum secretion-associated factors (ERSAs) on the secretory expression of an α-galactosidase gene derived from a Aspergillus oryzae strain were investigated by constructing multicopy expression cassettes and coexpressing the α-galactosidase gene with ERSAs. With the increase in the gene copy-number in the host genome, the expression of GalA was improved. However, the secretory expression level was not linearly related to the copy number. When the number was higher than four copies, the expression level of GalA gene declined. The ERSAs factors HAC1, PDI, and Ero1 improved the secretory expression of α-galactosidase, while Hsp40 inhibited its secretion. After methanol-induced expression in a bench-top bioreactor, Pichia recombinants carrying four copies of GalA genes reached 3520 U/mL in the supernatant of the culture. We further optimized the parameters for α-galactosidase to hydrolyze two types of galactooligosaccharides: raffinose and stachyose. This study has fulfilled the scale-up production of α-galactosidase, thus facilitating its industrial applications.

摘要

α-半乳糖苷酶能够催化从低聚半乳糖材料中去除α-1,6-连接的末端半乳糖残基,具有良好的工业应用潜力。α-半乳糖苷酶高水平且高效地分泌到细胞外空间,极大地简化了下游生物工程过程,有利于其生物应用。在本研究中,通过构建多拷贝表达盒并将α-半乳糖苷酶基因与内质网分泌相关因子(ERSAs)共表达,研究了基因剂量和内质网分泌相关因子对源自米曲霉菌株的α-半乳糖苷酶基因分泌表达的影响。随着宿主基因组中基因拷贝数的增加,GalA的表达得到改善。然而,分泌表达水平与拷贝数并非呈线性关系。当拷贝数高于四个时,GalA基因的表达水平下降。ERSAs因子HAC1、PDI和Ero1提高了α-半乳糖苷酶的分泌表达,而Hsp40抑制其分泌。在台式生物反应器中进行甲醇诱导表达后,携带四个GalA基因拷贝的毕赤酵母重组体在培养上清液中的活性达到3520 U/mL。我们进一步优化了α-半乳糖苷酶水解两种低聚半乳糖(棉子糖和水苏糖)的参数。本研究实现了α-半乳糖苷酶的规模化生产,从而有利于其工业应用。

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