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首页> 外文期刊>The Journal of General and Applied Microbiology >Improved heterologous protein production by a tripeptidyl peptidase gene (AosedD) disruptant of the filamentous fungus Aspergillus oryzae
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Improved heterologous protein production by a tripeptidyl peptidase gene (AosedD) disruptant of the filamentous fungus Aspergillus oryzae

机译:丝状真菌米曲霉的三肽基肽酶基因(AosedD)破坏物改善了异源蛋白质的生产

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Proteolytic degradation is one of the serious bottlenecks limiting the yields of heterologous protein production by Aspergillus oryzae. In this study, we selected a tripeptidyl peptidase gene AosedD (AO090166000084) as a candidate potentially degrading the heterologous protein, and performed localization analysis of the fusion protein AoSedD-EGFP in A. oryzae. As a result, the AoSedD-EGFP was observed in the septa and cell walls as well as in the culture medium, suggesting that AoSedD is a secretory enzyme. An AosedD disruptant was constructed to investigate an effect of AoSedD on the production level of heterologous proteins and protease activity. Both of the total protease and tripeptidyl peptidase activities in the culture medium of the AosedD disruptant were decreased as compared to those of the control strain. The maximum yields of recombinant bovine chymosin (CHY) and human lysozyme (HLY) produced by the AosedD dis-ruptants showed approximately 2.9- and 1.7-fold increases, respectively, as compared to their control strains. These results suggest that AoSedD is one of the major proteases involved in the proteolytic degradation of recombinant proteins in A. oryzae.
机译:蛋白水解降解是限制米曲霉生产异源蛋白质的产量的严重瓶颈之一。在这项研究中,我们选择了三肽基肽酶基因AosedD(AO090166000084)作为潜在降解异源蛋白的候选基因,并对米曲霉中融合蛋白AoSedD-EGFP进行了定位分析。结果,在隔片和细胞壁以及培养基中观察到了AoSedD-EGFP,这表明AoSedD是一种分泌酶。构建AosedD破坏剂以研究AoSedD对异源蛋白生产水平和蛋白酶活性的影响。与对照菌株相比,AosedD破坏剂培养基中的总蛋白酶和三肽基肽酶活性均降低。与对照菌株相比,由AosedD干扰物产生的重组牛凝乳酶(CHY)和人溶菌酶(HLY)的最大产量分别显示出约2.9倍和1.7倍的增长。这些结果表明,AoSedD是参与米曲霉中重组蛋白的蛋白水解降解的主要蛋白酶之一。

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