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Comparative proteomic analysis of high cell density cultivations with two recombinant Bacillus megaterium strains for the production of a heterologous dextransucrase

机译:高蛋白密度培养的两种重组巨大芽孢杆菌菌株用于生产异源葡聚糖酶的比较蛋白质组学分析

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摘要

High cell density cultivations were performed under identical conditions for two Bacillus megaterium strains (MS941 and WH320), both carrying a heterologous dextransucrase (dsrS) gene under the control of the xylA promoter. At characteristic points of the cultivations (end of batch, initial feeding, before and after induction) the proteome was analyzed based on two dimensional gel electrophoresis and mass spectrometric protein identification using the protein database "bmegMEC.v2" recently made available.High expression but no secretion of DsrS was found for the chemical mutant WH320 whereas for MS 941, a defined protease deficient mutant of the same parent strain (DSM319), not even expression of DsrS could be detected. The proteomic analysis resulted in the identification of proteins involved in different cellular pathways such as in central carbon and overflow metabolism, in protein synthesis, protein secretion and degradation, in cell wall metabolism, in cell division and sporulation, in membrane transport and in stress responses.The two strains exhibited considerable variations in expression levels of specific proteins during the different phases of the cultivation process, whereas induction of DsrS production had, in general, little effect. The largely differing behaviour of the two strains with regard to DsrS expression can be attributed, at least in part, to changes observed in the proteome which predominantly concern biosynthetic enzymes and proteins belonging to the membrane translocation system, which were strongly down-regulated at high cell densities in MS941 compared with WH320. At the same time a cell envelope-associated quality control protease and two peptidoglycan-binding proteins related to cell wall turnover were strongly expressed in MS941 but not found in WH320. However, to further explain the very different physiological responses of the two strains to the same cultivation conditions, it is necessary to identify the mutated genes in WH320 in addition to the known lacZ.In view of the results of this proteomic study it seems that at high cell density conditions and hence low growth rates MS941, in contrast to WH320, does not maintain a vegetative growth which is essential for the expression of the foreign dsrS gene by using the xylA promoter. It is conceivable that applications of a promoter which is highly active under nutrient-limited cultivation conditions is necessary, at least for MS941, for the overexpression of recombinant genes in such B. megaterium fed-batch cultivation process. However to obtain a heterologous protein in secreted and properly folded form stills remains a big challenge.
机译:在相同条件下对两个巨大芽孢杆菌菌株(MS941和WH320)进行高细胞密度培养,这两个菌株均在xylA启动子的控制下携带异源右旋糖核酸酶(dsrS)基因。在培养的特征点(分批结束,初次饲喂,诱导前后),基于二维凝胶电泳和质谱蛋白质鉴定,使用最近提供的蛋白质数据库“ bmegMEC.v2”对蛋白质组进行了分析。没有发现化学突变体WH320的DsrS分泌,而对于MS 941,同一亲本菌株(DSM319)的定义为蛋白酶缺陷的突变体,甚至检测不到DsrS的表达。蛋白质组学分析鉴定了参与不同细胞途径的蛋白质,例如参与中央碳和溢流代谢,蛋白质合成,蛋白质分泌和降解,细胞壁代谢,细胞分裂和孢子形成,膜转运和应激反应的蛋白质。在培养过程的不同阶段,这两种菌株在特定蛋白质的表达水平上表现出很大的差异,而诱导DsrS产生通常没有什么作用。两种菌株在DsrS表达方面的行为差异很大,至少可以部分归因于蛋白质组中观察到的变化,这些变化主要涉及属于膜易位系统的生物合成酶和蛋白质,在高浓度时强烈下调。与WH320相比,MS941中的细胞密度更高。同时,与细胞壁更新有关的细胞包膜相关质量控制蛋白酶和两种肽聚糖结合蛋白在MS941中强烈表达,但在WH320中未发现。然而,为了进一步解释这两种菌株对相同培养条件的生理反应,除了已知的lacZ外,还需要鉴定WH320中的突变基因。鉴于这项蛋白质组学研究的结果,似乎与WH320相比,高细胞密度条件和低生长速率的MS941无法维持营养生长,这对于使用xylA启动子表达外来dsrS基因至关重要。可以想象的是,至少对于MS941,对于在这种巨大芽孢杆菌补料分批培养过程中重组基因的过表达,必须应用在营养有限的培养条件下具有高活性的启动子。然而,获得分泌物和适当折叠形式的蒸馏物的异源蛋白质仍然是一个巨大的挑战。

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