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Enhancement of Expression and Apparent Secretion of Erwinia chrysanthemi Endoglucanase (Encoded by celZ) in Escherichia coli B

机译:大肠杆菌B中欧文氏菊内切葡聚糖酶(由celZ编码)的表达和表观分泌的增强

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摘要

Escherichia coli B has been engineered as a biocatalyst for the conversion of lignocellulose into ethanol. Previous research has demonstrated that derivatives of E. coli B can produce high levels of Erwinia chrysanthemi endoglucanase (encoded by celZ) as a periplasmic product and that this enzyme can function with commercial fungal cellulase to increase ethanol production. In this study, we have demonstrated two methods that improve celZ expression in E. coli B. Initially, with a low-copy-number vector, two E. coli glycolytic gene promoters (gap and eno) were tested and found to be less effective than the original celZ promoter. By screening 18,000 random fragments of Zymomonas mobilis DNA, a surrogate promoter was identified which increased celZ expression up to sixfold. With this promoter, large polar inclusion bodies were clearly evident in the periplasmic space. Sequencing revealed that the most active surrogate promoter is derived from five Sau3A1 fragments, one of which was previously sequenced in Z. mobilis. Visual inspection indicated that this DNA fragment contains at least five putative promoter regions, two of which were confirmed by primer extension analysis. Addition of the out genes from E. chrysanthemi EC16 caused a further increase in the production of active enzyme and facilitated secretion or release of over half of the activity into the extracellular environment. With the most active construct, of a total of 13,000 IU of active enzyme per liter of culture, 7,800 IU was in the supernatant. The total active endoglucanase was estimated to represent 4 to 6% of cellular protein.
机译:大肠杆菌B已被设计为生物催化剂,用于将木质纤维素转化为乙醇。先前的研究表明,大肠杆菌B的衍生物可以产生高水平的欧文氏菊花内切葡聚糖酶(由celZ编码)作为周质产物,并且该酶可以与商业真菌纤维素酶一起发挥作用,从而增加乙醇的产量。在这项研究中,我们已经证明了两种改善celB在大肠杆菌B中表达的方法。最初,使用低拷贝数的载体测试了两个大肠杆菌糖酵解基因启动子(gap和eno),发现效果较差。比原始的celZ启动子。通过筛选运动发酵单胞菌(Zymomonas mobilis)DNA的18,000个随机片段,鉴定了替代启动子,该启动子将celZ表达提高了六倍。使用该启动子,在周质空间中明显可见大的极性包涵体。测序表明,活性最高的替代启动子来自五个Sau3A1片段,其中一个先前已在运动发酵单胞菌中测序。目视检查表明该DNA片段含有至少五个推定的启动子区域,其中两个通过引物延伸分析证实。菊花大肠杆菌EC16的out基因的添加导致活性酶的产生进一步增加,并促进了一半以上的活性分泌或释放到细胞外环境中。对于最活跃的构建体,每升培养物中总共有13,000 IU的活性酶,上清液中有7,800 IU。估计总的活性内切葡聚糖酶占细胞蛋白的4%至6%。

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