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Aqueous two-phase polymer systems as tools for the study of a recombinant surface-expressed Escherichia coli hemagglutinin.

机译:两相水相聚合物系统作为研究重组表面表达的大肠杆菌血凝素的工具。

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摘要

The surface expression of an integral membrane hemagglutinin, HRA1, cloned from Escherichia coli O9: H10:K99 in heterologous E. coli strains was studied by utilizing a variety of polyethylene glycol-dextran and dextran-Ficoll aqueous two-phase polymer systems. Bacteria containing plasmids that encoded the hemagglutinin were found to partition differently from both the host bacteria lacking the plasmid and the original hemagglutinating strain in several of these systems. By using molecular biological techniques, the origin of the partition difference was unambiguously correlated to the expression of HRA1, providing evidence independent of the agglutination phenotype that the protein was accessible to the surrounding milieu. It was demonstrated by using bacterial partition in charge-sensitive systems that the agglutination event was not likely to be due to the presence of a nonspecific positively charged surface protein, as HRA1-expressing clones showed no less affinity for the relatively positive polyethylene glycol-rich upper phase than did control bacteria. This work demonstrates the utility of aqueous polymer two-phase systems for the study of surface-expressed recombinant proteins, due to the sensitivity of the systems and the presence of excellent controls (the host bacteria before plasmid introduction). In cloning and expression studies of surface-associated proteins, two-phase aqueous polymer systems could be used as an alternative to antibody production for the monitoring of surface expression, and these systems may give valuable information on the surface exposure of the protein.
机译:通过利用多种聚乙二醇-葡聚糖和葡聚糖-Ficoll水性两相聚合物系统研究了从大肠杆菌O9:H10:K99克隆的完整膜血凝素HRA1在异源大肠杆菌菌株中的表面表达。在这些系统中的一些系统中,发现含有编码血凝素的质粒的细菌与缺乏该质粒的宿主细菌和原始血凝素菌株的分配不同。通过使用分子生物学技术,分配差异的根源明确地与HRA1的表达相关,提供了与凝集表型无关的证据,表明该蛋白质可被周围环境访问。通过在电荷敏感系统中使用细菌分区证明,凝集事件不太可能是由于存在非特异性带正电荷的表面蛋白引起的,因为表达HRA1的克隆对相对较正的富含聚乙二醇的亲和性不低上层比控制细菌好。这项工作证明了水性聚合物两相系统在研究表面表达的重组蛋白方面的实用性,这是由于该系统的敏感性和出色的对照(质粒导入前的宿主细菌)的存在。在表面相关蛋白的克隆和表达研究中,两相水性聚合物系统可用作监测表面表达的抗体生产的替代方法,这些系统可提供有关蛋白表面暴露的有价值的信息。

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