Khalifeh Soltani Maryam, Arjmand Sareh, Ranaei Siadat Seyed Omid, Bagheri Abdolreza, Marashi Seyed Hassan
Department of Biotechnology and Plant Breeding, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.
Protein Research Center, Shahid Beheshti University, Tehran, Iran.
AMB Express. 2024 Aug 2;14(1):88. doi: 10.1186/s13568-024-01743-y.
Recombinant protein production in Komagataella phaffi (K. phaffi), a widely utilized host organism, can be optimized by enhancing the metabolic flux in the central carbon metabolism pathways. The methanol utilization pathway (MUT) during methanol-based growth plays a crucial role in providing precursors and energy for cell growth and development. This study investigated the impact of boosting the methanol dissimilation pathway, a branch of MUT that plays a vital role in detoxifying formaldehyde and providing energy in the form of NADH, in K. phaffi. This was achieved by integrating two orthologous genes from Hansenula polymorpha into the K. phaffi genome: formaldehyde dehydrogenase (HpFLD) and formate dehydrogenase (HpFMDH). The HpFLD and HpFMDH genes were isolated from the Hansenula polymorpha genome and inserted under the regulation of the pAOX1 promoter in the genome of recombinant K. phaffi that already contained a single copy of model protein genes (eGFP or EGII). The expression levels of these model proteins were assessed through protein activity assays and gene expression analysis. The findings revealed that while both orthologous genes positively influenced model protein production, HpFMDH exhibited a more pronounced upregulation in expression compared to HpFLD. Co-expression of both orthologous genes demonstrated synergistic effects, resulting in approximately a twofold increase in the levels of the model proteins detected. This study provides valuable insights into enhancing the production capacity of recombinant proteins in K. phaffi.
在广泛应用的宿主生物毕赤酵母(Komagataella phaffi,简称K. phaffi)中生产重组蛋白,可以通过增强中心碳代谢途径中的代谢通量来进行优化。基于甲醇生长期间的甲醇利用途径(MUT)在为细胞生长和发育提供前体和能量方面起着关键作用。本研究调查了增强甲醇异化途径(MUT的一个分支,在甲醛解毒和以NADH形式提供能量方面发挥重要作用)对毕赤酵母的影响。这是通过将来自多形汉逊酵母的两个直系同源基因整合到毕赤酵母基因组中来实现的:甲醛脱氢酶(HpFLD)和甲酸脱氢酶(HpFMDH)。从多形汉逊酵母基因组中分离出HpFLD和HpFMDH基因,并将其插入到已经包含单个模型蛋白基因(eGFP或EGII)拷贝的重组毕赤酵母基因组中pAOX1启动子的调控下。通过蛋白质活性测定和基因表达分析评估这些模型蛋白的表达水平。研究结果表明,虽然这两个直系同源基因都对模型蛋白的生产产生了积极影响,但与HpFLD相比,HpFMDH的表达上调更为明显。两个直系同源基因的共表达显示出协同效应,导致检测到的模型蛋白水平提高了约两倍。本研究为提高毕赤酵母中重组蛋白的生产能力提供了有价值的见解。