Microbiology and Biotechnology Institute, University of Latvia, Jelgavas Street 1, Riga, 1004, Latvia.
Latvian State Institute of Wood Chemistry, Dzerbenes Street 27, Riga, 1006, Latvia.
Sci Rep. 2023 Sep 22;13(1):15816. doi: 10.1038/s41598-023-42865-w.
Soy leghemoglobin is one of the most important and key ingredients in plant-based meat substitutes that can imitate the colour and flavour of the meat. To improve the high-yield production of leghemoglobin protein and its main component-heme in the yeast Pichia pastoris, glycerol and methanol cultivation conditions were studied. Additionally, in-silico metabolic modelling analysis of growth-coupled enzyme quantity, suggests metabolic gene up/down-regulation strategies for heme production. First, cultivations and metabolic modelling analysis of P. pastoris were performed on glycerol and methanol in different growth media. Glycerol cultivation uptake and production rates can be increased by 50% according to metabolic modelling results, but methanol cultivation-is near the theoretical maximum. Growth-coupled metabolic optimisation results revealed the best feasible upregulation (33 reactions) (1.47% of total reactions) and 66 downregulation/deletion (2.98% of total) reaction suggestions. Finally, we describe reaction regulation suggestions with the highest potential to increase heme production yields.
大豆血红蛋白是植物性肉类替代品中最重要和关键的成分之一,它可以模仿肉类的颜色和味道。为了提高酵母巴斯德毕赤酵母中血红蛋白蛋白及其主要成分血红素的高产率,研究了甘油和甲醇的培养条件。此外,通过生长偶联酶数量的计算机代谢模型分析,提出了血红素生产的代谢基因上调/下调策略。首先,在不同的生长培养基中对巴斯德毕赤酵母进行甘油和甲醇的培养和代谢模型分析。根据代谢模型分析结果,甘油培养的吸收和生产速率可以提高 50%,但甲醇培养接近理论最大值。生长偶联代谢优化结果显示,最佳可行的上调(33 个反应)(占总反应的 1.47%)和 66 个下调/删除(占总反应的 2.98%)反应建议。最后,我们描述了具有增加血红素产量潜力的最高反应调节建议。