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首页> 外文期刊>Journal of Bioscience and Bioengineering >Improvement of extracellular bacterial protein production in &ITPichia pastoris&IT by co-expression of endoplasmic reticulum residing GroEL-GroES
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Improvement of extracellular bacterial protein production in &ITPichia pastoris&IT by co-expression of endoplasmic reticulum residing GroEL-GroES

机译:通过同内质网延伸腹股沟组织的共表达改善细胞外细菌蛋白质产量的细胞外细菌蛋白质生产

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Pichia pastoris is an established host system for heterologous protein expression. However, the potential productivity of this system can be limited. In this study, the Escherichia coli chaperones (GroES-GroEL) were expressed from the P-GAP promoter and targeted to the secretory pathway through the endoplasmic reticulum (ER). The ability of the ER targeted chaperones to improve production of bacterial protein in P. pastoris was evaluated. The chaperones tagged with alpha-factor secretion- and ER retention-signal sequences were co-expressed with either extracellularly secreted phytase or intracellular D-phenylglycine aminotransferase (D-PhgAT) enzymes. The ER residing GroEL-GroES successfully increased the levels of active phytase extracellularly, 1.5-23-fold higher than the phytase expression alone, but did not enhance the formation of active, intracellular D-PhgAT. These results indicate that the chaperones have the potential to enhance production of active enzymes when present in the same trafficking pathway. This is the first report on the improvement of extracellular bacterial protein production through co-expression with ER residing bacterial chaperones in the Pichia system. The modified P. pastoris expression system may be beneficial for extracellular expression of other prokaryotic proteins. (C) 2017, The Society for Biotechnology, Japan. All rights reserved.
机译:Pichia Pastoris是一种用于异源蛋白表达的已建立的主机系统。然而,该系统的潜在生产率可以限制。在该研究中,从P-GAP启动子表达了大肠杆菌伴侣(GroOS-Groel)并靶向通过内质网(ER)的分泌途径。评估了ER针对性伴侣改善P. Pastoris中的细菌蛋白产生的能力。标记为α因子分泌和ER保留信号序列标记的伴侣,用细胞外分泌的植酸酶或细胞内D-苯基甘氨酸氨基转移酶(D-PhGat)酶共表达。 ER停留的腹股沟团成功地增加了活性植酸酶的细胞溶酶水平,仅比单独的植酸酶表达高1.5-23倍,但未增强活性细胞内D-PhGAT的形成。这些结果表明,当存在于同一贩运途径时,伴侣伴侣有可能增强活性酶的产生。这是一份关于通过在毕赤酵母系统中的ER偏差细菌伴侣通过共表达改善细胞外细菌蛋白质产量的第一报告。改性的P. Pastoris表达系统可能对其他原核蛋白的细胞外表达有益。 (c)2017年,日本生物技术协会。版权所有。

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