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Analysis of the Pseudomonas aeruginosa major outer membrane protein OprF by use of truncated OprF derivatives and monoclonal antibodies.

机译:使用截短的OprF衍生物和单克隆抗体分析铜绿假单胞菌主要外膜蛋白OprF。

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摘要

TnphoA mutagenesis of the cloned oprF gene was utilized to generate 16 classes of fusions encoding differing lengths of the amino terminus of OprF fused to either alkaline phosphatase or to peptide tags of 1 to 20 amino acids, depending on the orientation and reading frame into which TnphoA was inserted. Representatives of each of the 16 classes were sequenced to determine the precise fusion joint. Four of these 16 representatives which produced in-frame fusions to alkaline phosphatase and another 8 with fusion joints in the amino-terminal half of OprF failed to react with a panel of 10 specific monoclonal antibodies. In contrast, OprF derivatives with predicted fusion joints at amino acids 180, 204, 289, and 299 reacted with one to five of the monoclonal antibodies. Four other immunoreactive OprF derivatives were created by subcloning and encoded amino acids 1 to 187, 188 to 326, 1 to 273 and 1 to 170 plus 301 to 326. On the basis of reactivity with the TnphoA-truncated derivatives and subclones of oprF, the epitopes for all 10 monoclonal antibodies were localized, in part, to specific regions of OprF. Nnie of the 10 monoclonal antibodies, 8 of which recognize surface-exposed epitopes, mapped within the carboxy-terminal region of OprF that is homologous to the Escherichia coli outer membrane protein OmpA. Thus, we concluded that parts of the carboxy terminus of OprF are exposed on the external face of the outer membrane. In addition, a clone containing only the first two cysteine residues of OprF demonstrated reactivity with monoclonal antibodies MA4-4 and MA7-8 that was destroyed by 2-mercaptoethanol treatment, as was reactivity with intact OprF. Thus, we conclude that this first pair of cysteines at residues 176 and 185 of mature OprF form a disulfide bond.
机译:克隆的oprF基因的TnphoA诱变用于产生16类融合蛋白,这些融合蛋白编码与碱性磷酸酶或1至20个氨基酸的肽标签融合的不同长度的OprF氨基末端,具体取决于TnphoA的方向和阅读框被插入。对16个类别中的每个类别的代表进行排序,以确定精确的融合关节。在这16个代表中,有四个产生了与碱性磷酸酶的框内融合,另外八个在OprF的氨基末端一半具有融合接头,但它们未能与一组10种特异性单克隆抗体发生反应。相反,在氨基酸180、204、289和299处具有预测的融合接头的OprF衍生物与一到五个单克隆抗体反应。通过亚克隆产生其他四种免疫反应性OprF衍生物,并编码氨基酸1至187、188至326、1至273和1至170加301至326。基于与TnphoA截短的oprF衍生物和亚克隆的反应性,所有10种单克隆抗体的抗原决定簇均部分定位于OprF的特定区域。 10个单克隆抗体中的Nnie个,其中8个识别表面暴露的表位,位于与大肠杆菌外膜蛋白OmpA同源的OprF羧基末端区域。因此,我们得出结论,OprF的羧基末端部分暴露在外膜的外表面。另外,仅包含OprF的前两个半胱氨酸残基的克隆表现出与单克隆抗体MA4-4和MA7-8的反应性,该抗体被2-巯基乙醇处理破坏,与完整OprF的反应性相同。因此,我们得出结论,在成熟的OprF的残基176和185上的第一对半胱氨酸形成二硫键。

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