针对果蝇RNA聚合酶II最大亚基的单克隆抗体识别的表位特征。

R E Kontermann, Z Liu, R A Schulze, K A Sommer, I Queitsch, S Dübel, S M Kipriyanov, F Breitling, E K Bautz
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引用次数: 31

摘要

先前生成的针对果蝇RNA聚合酶II的单克隆抗体MAb215识别的表位被定位到最大(215 kDa)亚基的806-820氨基酸残基,该亚基位于原核和真核RNA聚合酶最大亚基的保守区域。测定了MAb215和重组单链Fv片段(scFv215)与酶以及用于表位定位的融合蛋白和合成肽的亲和力。此外,利用携带单氨基酸取代的肽,鉴定了与MAb215结合的重要表位氨基酸残基。该表位不参与聚合反应或DNA解绕过程,因为在以变性小牛胸腺DNA或双链低聚dc尾T7 DNA为模板的非特异性体外转录中未观察到单克隆抗体的抑制作用。相反,MAb215抑制kr ppel基因启动子和腺病毒-2主要晚期启动子的准确体外转录。模板DNA与核提取物的预孵育对抑制没有影响,这支持了表位不直接参与预起始复合物形成的观点。使用scFv215观察到相同的抑制效果。结果进一步证明,在大肠杆菌中产生的重组抗体片段与其亲本抗体具有相同的特异性和相似的亲和力,并证明scFv片段是分析转录过程的有用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the epitope recognized by a monoclonal antibody directed against the largest subunit of Drosophila RNA polymerase II.

The epitope recognized by monoclonal antibody MAb215 generated previously against Drosophila melanogaster RNA polymerase II was mapped to amino acid residues 806-820 of the largest, 215 kDa, subunit located in a region conserved within the largest subunits of pro- and eukaryotic RNA polymerases. The affinities of MAb215 and of a recombinant single-chain Fv fragment (scFv215) were determined for binding to the enzyme as well as the fusion protein and synthetic peptides used for epitope mapping. In addition, amino acid residues of the epitope important for binding to MAb215 were identified using peptides carrying single amino acid substitutions. The epitope is not involved in the polymerization reaction or the DNA unwinding process since no inhibitory effects of the monoclonal antibody were observed in nonspecific in vitro transcription using denatured calf thymus DNA or double stranded oligo dC-tailed T7 DNA as template. In contrast, MAb215 inhibits accurate in vitro transcription from the Krüppel gene promoter and from the adenovirus-2 major late promoter. Preincubation of template DNA with the nuclear extract had no effects on inhibition supporting the notion that the epitope does not participate directly in the formation of preinitiation complexes. The same inhibitory effects were observed using scFv215. The results provide further evidence that recombinant antibody fragments produced in Escherichia coli possess the same specificity and similar affinity as their parental antibodies and demonstrate that scFv fragments are useful tools for analysis of transcriptional processes.

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