Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD, United States.
University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD, United States.
Front Immunol. 2022 Jul 7;13:910367. doi: 10.3389/fimmu.2022.910367. eCollection 2022.
Antibody recognition of antigens is a critical element of adaptive immunity. One key class of antibody-antigen complexes is comprised of antibodies targeting linear epitopes of proteins, which in some cases are conserved elements of viruses and pathogens of relevance for vaccine design and immunotherapy. Here we report a detailed analysis of the structural and interface features of this class of complexes, based on a set of nearly 200 nonredundant high resolution antibody-peptide complex structures that were assembled from the Protein Data Bank. We found that antibody-bound peptides adopt a broad range of conformations, often displaying limited secondary structure, and that the same peptide sequence bound by different antibodies can in many cases exhibit varying conformations. Propensities of contacts with antibody loops and extent of antibody binding conformational changes were found to be broadly similar to those for antibodies in complex with larger protein antigens. However, antibody-peptide interfaces showed lower buried surface areas and fewer hydrogen bonds than antibody-protein antigen complexes, while calculated binding energy per buried interface area was found to be higher on average for antibody-peptide interfaces, likely due in part to a greater proportion of buried hydrophobic residues and higher shape complementarity. This dataset and these observations can be of use for future studies focused on this class of interactions, including predictive computational modeling efforts and the design of antibodies or epitope-based vaccine immunogens.
抗体识别抗原是适应性免疫的一个关键要素。一类关键的抗体-抗原复合物由针对蛋白质线性表位的抗体组成,在某些情况下,这些表位是病毒和病原体的保守元素,与疫苗设计和免疫治疗有关。在这里,我们基于从蛋白质数据库中组装的近 200 个非冗余高分辨率抗体-肽复合物结构的集合,对这类复合物的结构和界面特征进行了详细分析。我们发现,抗体结合的肽采用广泛的构象,通常显示有限的二级结构,并且由不同抗体结合的相同肽序列在许多情况下可以表现出不同的构象。与较大的蛋白质抗原结合的抗体相比,抗体环的接触倾向和抗体结合构象变化的程度在很大程度上相似。然而,抗体-肽界面的埋藏表面积和氢键比抗体-蛋白质抗原复合物少,而计算出的每个埋藏界面面积的结合能平均来说,抗体-肽界面更高,这可能部分归因于埋藏的疏水性残基比例更高和更高的形状互补性。这个数据集和这些观察结果可以用于未来专注于这类相互作用的研究,包括预测性计算建模工作和抗体或基于表位的疫苗免疫原的设计。