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构建毕赤酵母(Komagataella phaffii,旧称巴斯德毕赤酵母Pichia pastoris)表达系统:开发无甲醇表达系统的尝试。

Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system.

作者信息

Takagi Shinobu, Tsutsumi Noriko, Terui Yuji, Kong XiangYu, Yurimoto Hiroya, Sakai Yasuyoshi

机构信息

Novozymes Japan Ltd, CB-6 MTG, 1-3 Nakase, Mihama-ku, Chiba 261-8501, Japan.

Novozymes (China) Investment Co. Ltd, 14 Xinxi Road, Shangdi Zone, Haidian District, 100085 Beijing, China.

出版信息

FEMS Yeast Res. 2019 Sep 1;19(6). doi: 10.1093/femsyr/foz059.

Abstract

The construction of a methanol-free expression system of Komagataella phaffii (Pichia pastoris) was attempted by engineering a strong methanol-inducible DAS1 promoter using Citrobacter braakii phytase production as a model case. Constitutive expression of KpTRM1, formerly PRM1-a positive transcription regulator for methanol-utilization (MUT) genes of K. phaffii,was demonstrated to produce phytase without addition of methanol, especially when a DAS1 promoter was used but not an AOX1 promoter. Another positive regulator, Mxr1p, did not have the same effect on the DAS1 promoter, while it was more effective than KpTrmp1 on the AOX1 promoter. Removing a potential upstream repression sequence (URS) and multiplying UAS1DAS1 in the DAS1 promoter significantly enhanced the yield of C. braakii phytase with methanol-feeding, which surpassed the native AOX1 promoter by 80%. However, multiplying UAS1DAS1 did not affect the yield of methanol-free expression by constitutive KpTrm1p. Another important region to enhance the effect of KpTrm1p under a methanol-free condition was identified in the DAS1 promoter, and was termed ESPDAS1. Nevertheless, methanol-free phytase production using an engineered DAS1 promoter outperformed phytase production with the GAP promoter by 25%. Difference in regulation by known transcription factors on the AOX1 promoter and the DAS1 promoter was also illustrated.

摘要

以迟缓柠檬酸杆菌植酸酶生产为模型案例,通过改造强甲醇诱导型DAS1启动子,尝试构建毕赤酵母无甲醇表达系统。已证明,组成型表达KpTRM1(以前称为PRM1)——毕赤酵母甲醇利用(MUT)基因的正向转录调节因子,在不添加甲醇的情况下可产生植酸酶,特别是当使用DAS1启动子而非AOX1启动子时。另一个正向调节因子Mxr1p对DAS1启动子没有同样的作用,而它在AOX1启动子上比KpTrmp1更有效。去除DAS1启动子中的潜在上游抑制序列(URS)并增加UAS1DAS1,在添加甲醇的情况下显著提高了迟缓柠檬酸杆菌植酸酶的产量,比天然AOX1启动子高出80%。然而,增加UAS1DAS1并不影响组成型KpTrm1p的无甲醇表达产量。在DAS1启动子中鉴定出另一个在无甲醇条件下增强KpTrm1p作用的重要区域,称为ESPDAS1。尽管如此,使用工程改造的DAS1启动子进行无甲醇植酸酶生产比使用GAP启动子进行植酸酶生产的性能高出25%。还说明了已知转录因子对AOX1启动子和DAS1启动子调节的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c824/6736287/fc3514502476/foz059fig1.jpg

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