Institute for Biotechnology and Drug Research gGmbH (IBWF), D-Mainz, Germany.
Industrial Biotechnology, DECHEMA Research Institute, D-Frankfurt, Germany.
Microbiologyopen. 2021 Nov;10(6):e1229. doi: 10.1002/mbo3.1229.
The filamentous fungus Magnaporthe oryzae has the potential to be developed as an alternative platform organism for the heterologous production of industrially important enzymes. M. oryzae is easy to handle, fast-growing and unlike yeast, posttranslational modifications like N-glycosylations are similar to the human organism. Here, we established M. oryzae as a host for the expression of the unspecific peroxygenase from the basidiomycete Agrocybe aegerita (AaeUPO). Note, UPOs are attractive biocatalysts for selective oxyfunctionalization of non-activated carbon-hydrogen bonds. To improve and simplify the isolation of AaeUPO in M. oryzae, we fused a Magnaporthe signal peptide for protein secretion and set it under control of the strong EF1α-promoter. The success of the heterologous production of full-length AaeUPO in M. oryzae and the secretion of the functional enzyme was confirmed by a peroxygenase-specific enzyme assay. These results offer the possibility to establish the filamentous ascomycete M. oryzae as a broad applicable alternative expression system.
稻瘟病菌(Magnaporthe oryzae)具有作为替代平台生物用于异源生产工业上重要酶的潜力。稻瘟病菌易于操作,生长迅速,与酵母不同,其翻译后修饰(如 N-糖基化)与人类机体相似。在这里,我们建立了稻瘟病菌作为担子菌糙皮侧耳(Agrocybe aegerita)中无特异性过氧化物酶(AaeUPO)表达的宿主。需要注意的是,UPO 是选择性氧功能化非活化碳氢键的有吸引力的生物催化剂。为了提高和简化 AaeUPO 在稻瘟病菌中的分离,我们融合了一个稻瘟病菌信号肽用于蛋白分泌,并使其受到强 EF1α 启动子的控制。通过过氧化物酶特异性酶测定证实了全长 AaeUPO 在稻瘟病菌中的异源生产和功能酶的分泌成功。这些结果提供了将丝状子囊菌稻瘟病菌建立为广泛适用的替代表达系统的可能性。