Kim S T, Shirai H, Nakajima N, Higo J, Nakamura H
Department of Bioinformatics, Biomolecular Engineering Research Institute, Osaka, Japan.
Proteins. 1999 Dec 1;37(4):683-96.
Through a conformation search by a simulation calculation, the relationships between the amino acid sequences and the conformations of the third complementarity-determining region of the antibody heavy chain (CDR-H3) were investigated to characterize the large conformational varieties of antibodies. Here, we focused on the structural role of the first CDR-H3 residue, and we selected two antibodies, 28B4 and PLG, whose CDR-H3 conformations are significantly different, having Trp and Gly at the first position, respectively. Multicanonical molecular dynamics simulations, with the advantage of enhanced sampling efficiency, were performed for the CDR-H3 fragments of 28B4 and PLG, and a modified CDR-H3 model of 28B4, where the first Trp residue was substituted with Gly. When the first CDR-H3 residue is Trp, almost all of the observed CDR-H3 loops were bent at the first residue. In contrast, when the first residue is Gly, large varieties of loop conformations were observed. The structural role of this Gly residue is discussed from the perspective of the other antibody structures in the database. When the surrounding residues were included in the calculations, CDR-H3 loop structures similar to those in the crystal structures were reproduced as the major conformations for both the 28B4 and PLG antibodies.
通过模拟计算进行构象搜索,研究了抗体重链第三互补决定区(CDR-H3)的氨基酸序列与构象之间的关系,以表征抗体的大构象多样性。在此,我们重点关注CDR-H3第一个残基的结构作用,并选择了两种抗体28B4和PLG,它们的CDR-H3构象有显著差异,第一个位置分别为色氨酸(Trp)和甘氨酸(Gly)。对28B4和PLG的CDR-H3片段以及28B4的一个修饰CDR-H3模型进行了多正则分子动力学模拟,该模型中第一个色氨酸残基被甘氨酸取代。当CDR-H3的第一个残基是色氨酸时,几乎所有观察到的CDR-H3环在第一个残基处弯曲。相反,当第一个残基是甘氨酸时,观察到环构象的多种变化。从数据库中其他抗体结构的角度讨论了这个甘氨酸残基的结构作用。当计算中包括周围残基时,与晶体结构中相似的CDR-H3环结构作为28B4和PLG抗体的主要构象被重现。