Painter Corrie A, Cruz Anthony, López Gustavo E, Stern Lawrence J, Zavala-Ruiz Zarixia
Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, Massachusetts, United States of America.
PLoS One. 2008 Jun 11;3(6):e2403. doi: 10.1371/journal.pone.0002403.
Major histocompatibility complex proteins are believed to undergo significant conformational changes concomitant with peptide binding, but structural characterization of these changes has remained elusive.
METHODOLOGY/PRINCIPAL FINDINGS: Here we use molecular dynamics simulations and experimental probes of protein conformation to investigate the peptide-free state of class II MHC proteins. Upon computational removal of the bound peptide from HLA-DR1-peptide complex, the alpha50-59 region folded into the P1-P4 region of the peptide binding site, adopting the same conformation as a bound peptide. Strikingly, the structure of the hydrophobic P1 pocket is maintained by engagement of the side chain of Phe alpha54. In addition, conserved hydrogen bonds observed in crystal structures between the peptide backbone and numerous MHC side chains are maintained between the alpha51-55 region and the rest of the molecule. The model for the peptide-free conformation was evaluated using conformationally-sensitive antibody and superantigen probes predicted to show no change, moderate change, or dramatic changes in their interaction with peptide-free DR1 and peptide-loaded DR1. The binding observed for these probes is in agreement with the movements predicted by the model.
CONCLUSION/SIGNIFICANCE: This work presents a molecular model for peptide-free class II MHC proteins that can help to interpret the conformational changes known to occur within the protein during peptide binding and release, and can provide insight into possible mechanisms for DM action.
主要组织相容性复合体蛋白被认为会伴随肽结合发生显著的构象变化,但这些变化的结构特征一直难以捉摸。
方法/主要发现:在这里,我们使用分子动力学模拟和蛋白质构象的实验探针来研究II类MHC蛋白的无肽状态。从HLA-DR1-肽复合物中通过计算去除结合的肽后,α50-59区域折叠到肽结合位点的P1-P4区域,采用与结合肽相同的构象。引人注目的是,疏水P1口袋的结构通过苯丙氨酸α54侧链的参与得以维持。此外,在晶体结构中观察到的肽主链与众多MHC侧链之间的保守氢键在α51-55区域与分子的其余部分之间得以维持。使用预测在与无肽DR1和加载肽的DR1相互作用中无变化、适度变化或剧烈变化的构象敏感抗体和超抗原探针评估无肽构象模型。观察到这些探针的结合与模型预测的运动一致。
结论/意义:这项工作提出了无肽II类MHC蛋白的分子模型,有助于解释已知在肽结合和释放过程中蛋白质内发生的构象变化,并能深入了解DM作用的可能机制。