Department of Structural Biology, Stanford University School of Medicine, Stanford, California 94305, USA.
J Biol Chem. 2012 Oct 19;287(43):36251-7. doi: 10.1074/jbc.M112.407502. Epub 2012 Sep 4.
IgE antibodies interact with the high affinity IgE Fc receptor, FcεRI, and activate inflammatory pathways associated with the allergic response. The IgE-Fc region, comprising the C-terminal domains of the IgE heavy chain, binds FcεRI and can adopt different conformations ranging from a closed form incompatible with receptor binding to an open, receptor-bound state. A number of intermediate states are also observed in different IgE-Fc crystal forms. To further explore this apparent IgE-Fc conformational flexibility and to potentially trap a closed, inactive state, we generated a series of disulfide bond mutants. Here we describe the structure and biochemical properties of an IgE-Fc mutant that is trapped in the closed, non-receptor binding state via an engineered disulfide at residue 335 (Cys-335). Reduction of the disulfide at Cys-335 restores the ability of IgE-Fc to bind to its high affinity receptor, FcεRIα. The structure of the Cys-335 mutant shows that its conformation is within the range of previously observed, closed form IgE-Fc structures and that it retains the hydrophobic pocket found in the hinge region of the closed conformation. Locking the IgE-Fc into the closed state with the Cys-335 mutation does not affect binding of two other IgE-Fc ligands, omalizumab and DARPin E2_79, demonstrating selective blocking of the high affinity receptor binding.
IgE 抗体与高亲和力 IgE Fc 受体 FcεRI 相互作用,并激活与过敏反应相关的炎症途径。IgE-Fc 区由 IgE 重链的 C 末端结构域组成,与 FcεRI 结合,并可采用不同的构象,从与受体结合不兼容的封闭形式转变为开放的、与受体结合的状态。在不同的 IgE-Fc 晶体形式中也观察到许多中间状态。为了进一步探索这种明显的 IgE-Fc 构象灵活性,并可能捕获封闭的、无活性状态,我们生成了一系列二硫键突变体。在这里,我们描述了一种 IgE-Fc 突变体的结构和生化特性,该突变体通过在残基 335(Cys-335)处设计的二硫键被捕获在封闭的、非受体结合状态。Cys-335 处二硫键的还原恢复了 IgE-Fc 与高亲和力受体 FcεRIα 的结合能力。Cys-335 突变体的结构表明,其构象处于先前观察到的封闭形式 IgE-Fc 结构的范围内,并且保留了在封闭构象铰链区发现的疏水性口袋。用 Cys-335 突变将 IgE-Fc 锁定在封闭状态不会影响另外两种 IgE-Fc 配体奥马珠单抗和 DARPin E2_79 的结合,表明对高亲和力受体结合的选择性阻断。