Pichia pastoris 酶生产平台:从组合库筛选到利用残余蓝藻生物质进行台式发酵

IF 20.2 Q1 MATERIALS SCIENCE, PAPER & WOOD
Korbinian Sinzinger , Ulrike Obst , Samed Güner , Manuel Döring , Magdalena Haslbeck , Doris Schieder , Volker Sieber
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引用次数: 0

摘要

由于人们越来越需要转向更可持续的工业流程,对工业酶的需求持续上升。然而,制造高效的酶生产菌株和确定最佳的酶表达条件仍然是一项挑战。此外,酶本身的生产也会带来不可避免的影响,例如需要利用二次原料。在此,我们从更全面的角度来看待生物工艺的开发,并报告了一种综合方法,它使我们能够快速确定改进的酶表达和分泌条件,并利用蓝藻废弃生物质作为支持 Pichia pastoris 发酵的饲料。我们通过在蓝藻水解物和缓冲甘油复合培养基(BMGY)上生长的 P. pastoris 生产植酸酶来证明这些能力,其基因表达条件是通过随机分泌物库的高通量筛选确定的。当我们表现最好的菌株在 BMGY 培养基上进行饲料批量发酵时,我们的产量在三天内就能达到 7000 U/mL。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Pichia pastoris enzyme production platform: From combinatorial library screening to bench-top fermentation on residual cyanobacterial biomass

The demand for industrial enzymes is continually rising, fueled by the growing need to shift towards more sustainable industrial processes. However, making efficient enzyme production strains and identifying optimal enzyme expression conditions remains a challenge. Moreover, the production of the enzymes themselves comes with unavoidable impacts, e.g., the need to utilize secondary feedstocks. Here, we take a more holistic view of bioprocess development and report an integrative approach that allows us to rapidly identify improved enzyme expression and secretion conditions and make use of cyanobacterial waste biomass as feed for supporting Pichia pastoris fermentation. We demonstrate these capabilities by producing a phytase secreted by P. pastoris that is grown on cyanobacterium hydrolysate and buffered glycerol-complex (BMGY) medium, with genetic expression conditions identified by high-throughput screening of a randomized secretion library. When our best-performing strain is grown in a fed-batch fermentation on BMGY, we reach over 7 000 U/mL in three days.

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来源期刊
Journal of Bioresources and Bioproducts
Journal of Bioresources and Bioproducts Agricultural and Biological Sciences-Forestry
CiteScore
39.30
自引率
0.00%
发文量
38
审稿时长
12 weeks
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