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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Membrane Modulation of Super-Secreting “midiBacillus” Expressing the Major Staphylococcus aureus Antigen – A Mass-Spectrometry-Based Absolute Quantification Approach
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Membrane Modulation of Super-Secreting “midiBacillus” Expressing the Major Staphylococcus aureus Antigen – A Mass-Spectrometry-Based Absolute Quantification Approach

机译:超分泌“中型”表达主要金黄色葡萄球菌抗原的膜调制 - 一种基于质谱的绝对量化方法

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摘要

Bacillus subtilis has been extensively used as a microbial cell-factory for industrial enzymes due to its excellent capacities for protein secretion and large-scale fermentation. This bacterium is also an attractive host for biopharmaceutical production. However, the secretion potential of this organism is not fully utilized yet, mostly due to a limited understanding of critical rearrangements in the membrane proteome upon high-level protein secretion. Recently, it was shown that bottlenecks in heterologous protein secretion can be resolved by genome minimisation. Here, we present for the first time absolute membrane protein concentrations of a genome-reduced B. subtilis strain ('midiBacillus') expressing the immunodominant Staphylococcus aureus antigen A (IsaA). We quantitatively characterise the membrane proteome adaptation of midiBacillus during production stress on the level of molecules per cell for more than 400 membrane proteins, including determination of protein concentrations for ~61% of the predicted transporters. We demonstrate that ~30% of proteins with unknown functions display a significant increase in abundance, confirming the crucial role of membrane proteins in vital biological processes. In addition, our results show an increase of proteins dedicated to translational processes in response to IsaA induction. For the first time reported, we provide accumulation rates of a heterologous protein, demonstrating that midiBacillus secretes 2.41 molecules of IsaA per minute. Despite the successful secretion of this protein, it was found that there is still some IsaA accumulation occurring in the cytosol and membrane fraction, leading to a severe secretion stress response, and a clear adjustment of the cell’s array of transporters. This quantitative dataset offers unprecedented insights into bioproduction stress responses in a synthetic microbial cell.
机译:由于其优异的蛋白质分泌和大规模发酵能力,枯草芽孢杆菌被广泛地用作工业酶的微生物细胞厂。这种细菌也是生物制药生产的有吸引力的宿主。然而,该生物体的分泌潜力尚未充分利用,主要是由于对高水平蛋白质分泌时对膜蛋白质组中的临界重排进行有限的理解。最近,结果表明,通过基因组最小化可以解决异源蛋白质分泌中的瓶颈。这里,我们出现了第一次出现基因组的绝对膜蛋白浓度('midibacillus')表达免疫模数葡萄球菌抗原a(isaa)。我们定量表征中MIDIBACILLUS在生产胁迫下的膜蛋白质组适应,以超过400个膜蛋白的分子水平,包括测定蛋白质浓度的〜61%的预测转运蛋白。我们证明〜30%具有未知功能的蛋白质显示出大量增加,确认膜蛋白在重要的生物过程中的重要作用。此外,我们的结果表明,蛋白质蛋白质的增加,以响应于ISAA诱导而致力于翻译过程。由于第一次报道,我们提供异源蛋白质的积累率,证明MIDIBACILLUS分泌2.41分子的isaa每分钟。尽管该蛋白质的分泌成功,但发现仍然存在于细胞溶胶和膜级分中的一些isaa积累,导致严重的分泌应激反应,并清楚地调整细胞的转运仪阵列。该定量数据集对合成微生物细胞中的生物生产应激反应提供了前所未有的洞察。

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