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首页> 外文期刊>Applied Biochemistry and Biotechnology >Effects of Low-Shear Modeled Microgravity on the Characterization of Recombinant β-D-Glucuronidase Expressed in Pichia pastoris
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Effects of Low-Shear Modeled Microgravity on the Characterization of Recombinant β-D-Glucuronidase Expressed in Pichia pastoris

机译:低剪切模拟微重力对巴斯德毕赤酵母表达的重组β-D-葡萄糖醛酸苷酶特性的影响

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In this study, we used a high-aspect-ratio vessel (HARV), which could model environment of microgravity on ground to investigate for the first time the effects of low-shear modeled microgravity (LSMMG) on the characterization of recombinant β-D-glucuronidase expressed in Pichia pastoris. The β-D-glucuronidase gene (GenBank accession no. EU095019) derived from Penicillium purpurogenum Li-3 encoding β-D-glucuronidase (PGUS) was expressed in P. pastoris GS115 in two different environments of LSMMG and normal gravity (NG). Results manifested that both LSMMG and NG conditions had insignificant effects on temperature and pH activity (optimal temperature and pH were 55 and 5.0 °C, respectively) and characteristic stability of recombinant PGUS. However, the catalytic activity of recombinant PGUS expressed under LSMMG was less affected by metal ions and EDTA as compared with that of NG. Furthermore, K m value of the recombinant PGUS expressed under LSMMG was nearly one fifth of that under NG (1.72 vs. 7.72), whereas catalytic efficiency (k cat/K m) of PGUS expressed under LSMMG (13.55) was 3.7 times higher than that of NG (3.61). The results initially reveal the significant alterations in catalytic properties of recombinant enzyme in response to LSMMG environment and have potential application in bioprocessing and biocatalysis.
机译:在这项研究中,我们使用高纵横比容器(HARV)来模拟地面微重力环境,这是首次研究低剪切模拟微重力(LSMMG)对重组β-D表征的影响-葡糖醛酸糖苷酶在巴斯德毕赤酵母中表达。源自青霉青霉Li-3的编码β-D-葡糖醛酸糖苷酶(PGUS)的β-D-葡糖醛酸糖苷酶基因(GenBank登录号EU095019)在巴斯德毕赤酵母GS115中在两种不同的LSMGG和正常重力(NG)环境中表达。结果表明,LSMGG和NG条件均对温度和pH活性(最佳温度和pH分别为55和5.0°C)和重组PGUS的特征稳定性无显着影响。然而,与NG相比,在LSMGG下表达的重组PGUS的催化活性受金属离子和EDTA的影响较小。此外,在LSMMG下表达的重组PGUS的K m 值几乎是在NG下的PGUS的五分之一(1.72 vs. 7.72),而催化效率(k cat / K < LSMMG(13.55)表达的PGUS的sub> m )是NG(3.61)的3.7倍。结果最初揭示了响应于LSMMG环境的重组酶催化特性的显着改变,并在生物加工和生物催化中具有潜在的应用。

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