Liu Z, Song D, Kramer A, Martin A C, Dandekar T, Schneider-Mergener J, Bautz E K, Dübel S
Universität Heidelberg, Molekulare Genetik, Im Neuenheimer Feld 230, 69120 Heidelberg, Germany.
J Mol Recognit. 1999 Mar-Apr;12(2):103-11. doi: 10.1002/(SICI)1099-1352(199903/04)12:2<103::AID-JMR447>3.0.CO;2-B.
A bacterially expressed single chain antibody (scFv215) directed against the largest subunit of drosophila RNA polymerase II was analysed. Structure and function of the antigen binding site in scFv215 were probed by chain shuffling and by site-specific mutagenesis. The entire variable region of either the heavy or light chain was replaced by an unrelated heavy or light chain. Both replacements resulted in a total loss of binding activity suggesting that the antigen binding site is contributed by both chains. The functional contributions of each complementarity determining region (CDR) were investigated by site specific mutagenesis of each CDR separately. Mutations in two of the CDRs, CDR1 of light chain and CDR2 of heavy chain, reduced the binding activity significantly. Each of the amino acids in these two CDRs was replaced individually by alanine (alanine walking). Seven amino acid substitutions in the two CDRs were found to reduce the binding activity by more than 50%. The data support a computer model of scFv215 which fits an epitope model based on a mutational analysis of the epitope suggesting an alpha-helical structure for the main contact area.
对一种针对果蝇RNA聚合酶II最大亚基的细菌表达单链抗体(scFv215)进行了分析。通过链改组和位点特异性诱变探究了scFv215中抗原结合位点的结构和功能。重链或轻链的整个可变区被不相关的重链或轻链取代。两种取代都导致结合活性完全丧失,这表明抗原结合位点由两条链共同构成。通过分别对每个互补决定区(CDR)进行位点特异性诱变来研究每个CDR的功能贡献。轻链的CDR1和重链的CDR2这两个CDR中的突变显著降低了结合活性。这两个CDR中的每个氨基酸都被丙氨酸单独取代(丙氨酸扫描)。发现这两个CDR中的七个氨基酸取代使结合活性降低了50%以上。这些数据支持了scFv215的计算机模型,该模型基于对表位的突变分析符合表位模型,表明主要接触区域具有α螺旋结构。