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首页> 外文期刊>Applied and Environmental Microbiology >Functional Cell Surface Display and Controlled Secretion of Diverse Agarolytic Enzymes by Escherichia coli with a Novel Ligation-Independent Cloning Vector Based on the Autotransporter YfaL
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Functional Cell Surface Display and Controlled Secretion of Diverse Agarolytic Enzymes by Escherichia coli with a Novel Ligation-Independent Cloning Vector Based on the Autotransporter YfaL

机译:功能性细胞表面展示和大肠杆菌分泌的多种Agarolytic酶与基于自动转运蛋白YfaL的新型独立于连接的克隆载体的控制分泌

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摘要

Autotransporters have been employed as the anchoring scaffold for cell surface display by replacing their passenger domains with heterologous proteins to be displayed. We adopted an autotransporter (YfaL) of Escherichia coli for the cell surface display system. The critical regions in YfaL for surface display were identified for the construction of a ligation-independent cloning (LIC)-based display system. The designed system showed no detrimental effect on either the growth of the host cell or overexpressing heterologous proteins on the cell surface. We functionally displayed monomeric red fluorescent protein (mRFP1) as a reporter protein and diverse agarolytic enzymes from Saccharophagus degradans 2-40, including Aga86C and Aga86E, which previously had failed to be functional expressed. The system could display different sizes of proteins ranging from 25.3 to 143 kDa. We also attempted controlled release of the displayed proteins by incorporating a tobacco etch virus protease cleavage site into the C termini of the displayed proteins. The maximum level of the displayed protein was 6.1 × 104 molecules per a single cell, which corresponds to 5.6% of the entire cell surface of actively growing E. coli.
机译:自转运蛋白已通过用待展示的异源蛋白替代其客运结构域而被用作细胞表面展示的锚定支架。我们在细胞表面展示系统中采用了大肠杆菌的自动转运蛋白(YfaL)。确定了YfaL中用于表面展示的关键区域,用于构建基于连接非依赖性克隆(LIC)的展示系统。设计的系统对宿主细胞的生长或在细胞表面过表达异源蛋白质均无有害影响。我们在功能上展示了单体红色荧光蛋白(mRFP1)作为报告蛋白,还使用了糖腐降解菌2-40的多种琼脂分解酶,包括Aga86C和Aga86E,这些以前无法进行功能表达。该系统可以显示25.3至143 kDa的不同大小的蛋白质。我们还尝试通过将烟草蚀刻病毒蛋白酶切割位点整合到展示蛋白的C末端来控制展示蛋白的释放。展示的蛋白质的最大水平为每个单个细胞6.1×10 4 分子,相当于活跃生长的大肠杆菌整个细胞表面的5.6%。

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