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Overexpressing key component genes of the secretion pathway for enhanced secretion of an Aspergillus niger glucose oxidase in Trichoderma reesei.

Enzyme Microb Technol.. 2017-11; 
Wu Y, Sun X, Xue X, Luo H, Yao B, Xie X, Su X.
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Gene Synthesis ... Gene Designer 2.0 software (ATUM, Newark, CA). The optimized gene was synthesized by GenScript (Nanjing, China) and PCR amplified using the primers godF and godR (Table S1). The cbh1 promoter and terminator were ... Get A Quote

Abstract

Vast interest exists in developing T. reesei for production of heterologous proteins. Although rich genomic and transcriptomic information has been uncovered for the T. reesei secretion pathway, little is known about whether engineering its key components could enhance expression of a heterologous gene. In this study, snc1, a v-SNARE gene, was first selected for overexpression in T. reesei. In engineered T. reesei with additional copies of snc1, the Aspergillus niger glucose oxidase (AnGOD) was produced to a significantly higher level (2.2-fold of the parental strain). hac1 and bip1, two more component genes in the secretion pathway, were further tested for overexpression and found to be also beneficial for AnG... More

Keywords

Glucose oxidase; Secretion pathway; Trichoderma reesei; bip1; hac1; snc1