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Cell surface engineering of Bacillus subtilis improves production yields of heterologously expressed α-amylases

机译:枯草芽孢杆菌的细胞表面工程提高了异源表达的α-淀粉酶的产量

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Background Bacillus subtilis is widely used as a cell factory for numerous heterologous proteins of commercial value and medical interest. To explore the possibility of further enhancing the secretion potential of this model bacterium, a library of engineered strains with modified cell surface components was constructed, and the corresponding influences on protein secretion were investigated by analyzing the secretion of α-amylase variants with either low-, neutral- or high- isoelectric points (pI). Results Relative to the wild-type strain, the presence of overall anionic membrane phospholipids (phosphatidylglycerol and cardiolipin) increased dramatically in the PssA-, ClsA- and double KO mutants, which resulted in an up to 47% higher secretion of α-amylase. Additionally, we demonstrated that the appropriate net charge of secreted targets (AmyTS-23, AmyBs and AmyBm) was beneficial for secretion efficiency as well. Conclusions In B. subtilis, the characteristics of cell membrane phospholipid bilayer and the pIs of heterologous α-amylases appear to be important for their secretion efficiency. These two factors can be engineered to reduce the electrostatic interaction between each other during the secretion process, which finally leads to a better secretion yield of α-amylases.
机译:背景技术枯草芽孢杆菌被广泛用作许多具有商业价值和医学兴趣的异源蛋白质的细胞工厂。为了探索进一步提高该模型细菌分泌潜能的可能性,构建了具有修饰的细胞表面成分的工程菌株文库,并通过分析低-α-淀粉酶变体的分泌研究了对蛋白质分泌的相应影响。 ,中性或高等电点(pI)。结果相对于野生型菌株,PssA-,ClsA-和双KO突变体中整体阴离子膜磷脂(磷脂酰甘油和心磷脂)的存在显着增加,这导致α-淀粉酶的分泌提高了47%。此外,我们证明了分泌靶标(AmyTS-23,AmyBs和AmyBm)的适当净电荷也有利于分泌效率。结论在枯草芽孢杆菌中,细胞膜磷脂双层的特性和异源α-淀粉酶的pI似乎对它们的分泌效率很重要。可以设计这两个因素来减少分泌过程中彼此之间的静电相互作用,最终导致更好的α-淀粉酶分泌量。

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