首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Disruption of genes involved in CORVET complex leads to enhanced secretion of heterologous carboxylesterase only in protease deficient Pichia pastoris
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Disruption of genes involved in CORVET complex leads to enhanced secretion of heterologous carboxylesterase only in protease deficient Pichia pastoris

机译:参与慢性络合物的基因的破坏导致仅在蛋白酶缺陷的Pichia Pastoris中增强异源羧基酯酶的分泌

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The methylotrophic yeast Pichia pastoris (Komagataella spp.) is a popular microbial host for the production of recombinant proteins. Previous studies have shown that mis-sorting to the vacuole can be a bottleneck during production of recombinant secretory proteins in yeast, however, no information was available for P. pastoris. In this work the authors have therefore generated vps (vacuolar protein sorting) mutant strains disrupted in genes involved in the CORVET (class C core vacuole/endosome tethering) complex at the early stages of endosomal sorting. Both vps8 and vps21 strains contained lower extracellular amounts of heterologous carboxylesterase (CES) compared to the control strain, which could be attributed to a high proteolytic activity present in the supernatants of CORVET engineered strains due to rerouting of vacuolar proteases. Serine proteases were identified to be responsible for this proteolytic degradation by liquid chromatography-mass spectrometry and protease inhibitor assays. Deletion of the major cellular serine protease Prb1 in vps8 and vps21 strains did not only rescue the extracellular CES levels, but even outperformed the parental CES strain (56 and 80% higher yields, respectively). Further deletion of Ybr139W, another serine protease, did not show a further increase in secretion levels. Higher extracellular CES activity and low proteolytic activity were detected also in fed batch cultivation of vps21prb1 strains, thus confirming that modifying early steps in the vacuolar pathway has a positive impact on heterologous protein secretion.
机译:甲基嗜雌性酵母Pichia Pastoris(Komagateella SPP。)是一种用于生产重组蛋白的流域微生物宿主。以前的研究表明,在酵母中产生重组分泌蛋白的生产过程中,对液体的瓶颈可以是瓶颈,但是,P. Pastoris没有任何信息。因此,在这项工作中,作者因此产生了在内体分选的早期阶段中涉及Corvet(C芯芳芯/内体系束性)复合物中的基因中被破坏的VPS(真空蛋白质分选)突变菌株。与对照菌株相比,VPS8和VPS21菌株含有较低的细胞外羧酸酯酶(CES),其可归因于由于真空蛋白酶的重新排出而归因于Corvet工程菌株的上清液中存在的高蛋白水解活性。鉴定丝氨酸蛋白酶是通过液相色谱 - 质谱和蛋白酶抑制剂测定的该蛋白水解降解的原因。缺失VPS8和VPS21菌株中的主要细胞丝氨酸蛋白酶PRB1不仅拯救了细胞外CES水平,但甚至优于亲本CES菌株(分别更高的产量为56%和80%)。进一步缺失YBR139W,另一种丝氨酸蛋白酶,未显示出分泌水平的进一步增加。在FED分批培养的VPS21PRB1菌株中也检测到较高的细胞外CES活性和低蛋白水解活性,从而证实改变真空途径中的早期步骤对异源蛋白质分泌具有积极的影响。

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