Malia Thomas J, Teplyakov Alexey, Ernst Robin, Wu Sheng-Jiun, Lacy Eilyn R, Liu Xuesong, Vandermeeren Marc, Mercken Marc, Luo Jinquan, Sweet Raymond W, Gilliland Gary L
Janssen Research & Development, LLC, 1400 McKean Road, Spring House, Pennsylvania, 19477.
Proteins. 2016 Apr;84(4):427-34. doi: 10.1002/prot.24988. Epub 2016 Feb 5.
Microtubule-associated protein tau becomes abnormally phosphorylated in Alzheimer's disease and other tauopathies and forms aggregates of paired helical filaments (PHF-tau). AT8 is a PHF-tau-specific monoclonal antibody that is a commonly used marker of neuropathology because of its recognition of abnormally phosphorylated tau. Previous reports described the AT8 epitope to include pS202/pT205. Our studies support and extend previous findings by also identifying pS208 as part of the binding epitope. We characterized the phosphoepitope of AT8 through both peptide binding studies and costructures with phosphopeptides. From the cocrystal structure of AT8 Fab with the diphosphorylated (pS202/pT205) peptide, it appeared that an additional phosphorylation at S208 would also be accommodated by AT8. Phosphopeptide binding studies showed that AT8 bound to the triply phosphorylated tau peptide (pS202/pT205/pS208) 30-fold stronger than to the pS202/pT205 peptide, supporting the role of pS208 in AT8 recognition. We also show that the binding kinetics of the triply phosphorylated peptide pS202/pT205/pS208 was remarkably similar to that of PHF-tau. The costructure of AT8 Fab with a pS202/pT205/pS208 peptide shows that the interaction interface involves all six CDRs and tau residues 202-209. All three phosphorylation sites are recognized by AT8, with pT205 acting as the anchor. Crystallization of the Fab/peptide complex under acidic conditions shows that CDR-L2 is prone to unfolding and precludes peptide binding, and may suggest a general instability in the antibody.
微管相关蛋白tau在阿尔茨海默病和其他tau蛋白病中会发生异常磷酸化,并形成双螺旋丝(PHF-tau)聚集体。AT8是一种PHF-tau特异性单克隆抗体,由于其能识别异常磷酸化的tau蛋白,因此是神经病理学中常用的标志物。先前的报道称AT8抗原决定簇包括pS202/pT205。我们的研究通过将pS208鉴定为结合抗原决定簇的一部分,支持并扩展了先前的发现。我们通过肽结合研究和与磷酸肽的共结构对AT8的磷酸化抗原决定簇进行了表征。从AT8 Fab与双磷酸化(pS202/pT205)肽的共晶体结构来看,S208处的额外磷酸化似乎也能被AT8所容纳。磷酸肽结合研究表明,AT8与三磷酸化的tau肽(pS202/pT205/pS208)的结合力比与pS202/pT205肽的结合力强30倍,这支持了pS208在AT8识别中的作用。我们还表明,三磷酸化肽pS202/pT205/pS208的结合动力学与PHF-tau的结合动力学非常相似。AT8 Fab与pS202/pT205/pS208肽的共结构表明,相互作用界面涉及所有六个互补决定区和tau蛋白的202 - 209位残基。所有三个磷酸化位点都能被AT8识别,其中pT205起锚定作用。在酸性条件下Fab/肽复合物的结晶表明,互补决定区L2易于展开并排除肽结合,这可能表明该抗体普遍存在不稳定性。