毕赤酵母
纤维素酶
异源的
合成生物学
乙醇氧化酶
表情盒
异源表达
生物
蛋白质工程
生物技术
计算生物学
重组DNA
基因
生物化学
酶
载体(分子生物学)
作者
Hayat Ullah,Meysam Madadi,Mohammad Ali Asadollahi,Yun Hu,Shaohua Dou,Junshu Yan,Hailin Huan,Fubao Sun
摘要
Abstract The yeast expression system, Pichia pastoris , is one of the most robust and versatile expression systems in biotechnology and molecular biology, generally considered as a safe host for heterologous protein expression, especially for producing cellulases and xylanases at the industrial level. Despite the high recombinant protein expression rate, the potential of the P. pastoris expression system has still not been fully explored. Cultivation of P. pastoris under optimized conditions greatly relies on the strain and is associated with certain problems such as promoter strength, sensitivity to methanol, and oxygen demand. To address these issues, different genetic engineering strategies have been employed. Advancements in promoter engineering, optimization of gene dosage and codon usage, recombinant plasmid engineering using CRISPR/Cas9 system, and directed evolution strategies have proven beneficial to the yield of cellulase expression levels. This study will systemically review recent progress in various genetic engineering strategies to enhance cellulase and xylanase expression in the P. pastoris expression system. The utilization of alcohol oxidase 1 promoter ( pAOX1 ), methanol‐free system, and recombinant plasmid engineering for improved production of these enzymes are highlighted. Additionally, we discuss the recent advancements in the P. pastoris expression system toolbox for improved cellulase and xylanase production, thus providing a deep insight into how P. pastoris is becoming the indispensable platform for heterologous protein production. © 2023 Society of Chemical Industry (SCI).
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