Levy R, Assulin O, Scherf T, Levitt M, Anglister J
Department of Polymer Research, Weizmann Institute of Science, Rehovot, Israel.
Biochemistry. 1989 Sep 5;28(18):7168-75. doi: 10.1021/bi00444a006.
The interactions between the aromatic amino acids of two monoclonal antibodies (TE32 and TE33) with specific amino acid residues of a peptide of cholera toxin (CTP3) have been determined by two-dimensional (2D) transferred NOE difference spectroscopy. Aromatic amino acids are found to play an important role in peptide binding. In both antibodies two tryptophan and two tyrosine residues and one histidine residue interact with the peptide. In TE33 there is an additional phenylalanine residue that also interacts with the peptide. The residues of the CTP3 peptide that have been found to interact with the antibody are val 3, pro 4, gly 5, gln 7, his 8, and asp 10. We have determined the amino acid sequences of the two antibodies by direct mRNA sequencing. Computerized molecular modeling has been used to build detailed all-atom models of both antibodies from the known conformations of other antibodies. These models allow unambiguous assignment of most of the antibody residues that interact with the peptide. A comparison of the amino acid sequences of the two anti-CTP3 antibodies with other antibodies from the same gene family reveals that the majority of the aromatic residues involved in the binding of CTP3 are conserved although these antibodies have different specificities. This similarity suggests that these aromatic residues create a general hydrophobic pocket and that other residues in the complementarity-determining regions (CDRs) modulate the shape and the polarity of the combining site to fit the specific antigens.
通过二维(2D)转移NOE差光谱法确定了两种单克隆抗体(TE32和TE33)的芳香族氨基酸与霍乱毒素肽(CTP3)特定氨基酸残基之间的相互作用。发现芳香族氨基酸在肽结合中起重要作用。在两种抗体中,两个色氨酸、两个酪氨酸残基和一个组氨酸残基与该肽相互作用。在TE33中,还有一个苯丙氨酸残基也与该肽相互作用。已发现与抗体相互作用的CTP3肽的残基是val 3、pro 4、gly 5、gln 7、his 8和asp 10。我们通过直接mRNA测序确定了这两种抗体的氨基酸序列。利用计算机分子建模,根据其他抗体的已知构象构建了这两种抗体的详细全原子模型。这些模型能够明确确定与该肽相互作用的大多数抗体残基。将两种抗CTP3抗体的氨基酸序列与来自同一基因家族的其他抗体进行比较,发现尽管这些抗体具有不同的特异性,但参与CTP3结合的大多数芳香族残基是保守的。这种相似性表明,这些芳香族残基形成了一个通用的疏水口袋,互补决定区(CDR)中的其他残基调节结合位点的形状和极性以适应特定抗原。