重组DNA
酵母
蛋白质组
酿酒酵母
计算生物学
代谢工程
合成生物学
基因组
分泌物
分泌蛋白
生物
生产(经济)
蛋白质生物合成
基因
蛋白质工程
计算机科学
生物信息学
生物化学
酶
宏观经济学
经济
作者
Feiran Li,Chen Yu,Qi Qi,Yanyan Wang,Le Yuan,Mingtao Huang,Ibrahim E. Elsemman,Amir Feizi,Eduard J. Kerkhoven,Jens Nielsen
标识
DOI:10.1038/s41467-022-30689-7
摘要
Eukaryotic cells are used as cell factories to produce and secrete multitudes of recombinant pharmaceutical proteins, including several of the current top-selling drugs. Due to the essential role and complexity of the secretory pathway, improvement for recombinant protein production through metabolic engineering has traditionally been relatively ad-hoc; and a more systematic approach is required to generate novel design principles. Here, we present the proteome-constrained genome-scale protein secretory model of yeast Saccharomyces cerevisiae (pcSecYeast), which enables us to simulate and explain phenotypes caused by limited secretory capacity. We further apply the pcSecYeast model to predict overexpression targets for the production of several recombinant proteins. We experimentally validate many of the predicted targets for α-amylase production to demonstrate pcSecYeast application as a computational tool in guiding yeast engineering and improving recombinant protein production.
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