Anglister J, Bond M W, Frey T, Leahy D, Levitt M, McConnell H M, Rule G S, Tomasello J, Whittaker M
Stauffer Laboratory for Physical Chemistry, Stanford University, California 94305.
Biochemistry. 1987 Sep 22;26(19):6058-64. doi: 10.1021/bi00393a017.
Two Fab fragments of the monoclonal anti dinitrophenyl (DNP) spin-label antibody AN02 were prepared by recombination of specifically deuterated heavy and light chains. In the recombinant H(I)L(II) all the tyrosines and phenylalanines were perdeuterated as were the tryptophan residues of the heavy chain. In the recombinant H(II)L(I) all the tyrosines and phenylalanines were perdeuterated as were the tryptophan residues of the light chain. Saturation of three resonances of H(I)L(II), assigned to tryptophan protons of the light chain, resulted in magnetization transfer to the aromatic proton at position 6 of the DNP ring and to the CH2 protons of the glycines linked to the DNP in a diamagnetic hapten (DNP-DG). Saturation of three resonances of H(II)L(I) assigned to tryptophan protons of the heavy chain resulted in magnetization transfer to the CH2 protons of the glycines in DNP-DG. From the dependence of the magnetization transfer on the irradiation time, the cross relaxation rates between the involved protons were estimated. The inferred distances between these protons of the hapten and certain tryptophan protons are 3-4 A. It is concluded that in the combining site of AN02 there is one tryptophan from the light chain and one tryptophan from the heavy chain that are very near the hapten. When all tyrosines and phenylalanines were perdeuterated and all tryptophan aromatic protons were deuterated except for the protons at positions 2 and 5, titration of the Fab fragments with variable amounts of paramagnetic hapten showed that one proton from the light chain tryptophan is near (less than 7 A) the unpaired electron and that three other protons are significantly closer than 15 A.(ABSTRACT TRUNCATED AT 250 WORDS)
通过特异性氘代重链和轻链的重组制备了单克隆抗二硝基苯基(DNP)自旋标记抗体AN02的两个Fab片段。在重组H(I)L(II)中,所有酪氨酸和苯丙氨酸以及重链的色氨酸残基都被全氘代。在重组H(II)L(I)中,所有酪氨酸和苯丙氨酸以及轻链的色氨酸残基都被全氘代。对H(I)L(II)中归属于轻链色氨酸质子的三个共振进行饱和,导致磁化转移至DNP环第6位的芳族质子以及与抗磁性半抗原(DNP-DG)中DNP相连的甘氨酸的CH2质子。对H(II)L(I)中归属于重链色氨酸质子的三个共振进行饱和,导致磁化转移至DNP-DG中甘氨酸的CH2质子。根据磁化转移对照射时间的依赖性,估算了相关质子之间的交叉弛豫率。半抗原的这些质子与某些色氨酸质子之间推断的距离为3 - 4埃。得出的结论是,在AN02的结合位点有一个来自轻链的色氨酸和一个来自重链的色氨酸,它们非常靠近半抗原。当所有酪氨酸和苯丙氨酸都被全氘代且除第2和5位质子外所有色氨酸芳族质子都被氘代时,用不同量的顺磁性半抗原对Fab片段进行滴定表明,来自轻链色氨酸的一个质子靠近(小于7埃)未成对电子,并且其他三个质子明显更靠近,距离小于15埃。(摘要截断于250字)