Molecular Biosensor and Imaging Center, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
J Mol Biol. 2013 Nov 15;425(22):4595-613. doi: 10.1016/j.jmb.2013.08.014. Epub 2013 Aug 23.
We report that a symmetric small-molecule ligand mediates the assembly of antibody light chain variable domains (VLs) into a correspondent symmetric ternary complex with novel interfaces. The L5* fluorogen activating protein is a VL domain that binds malachite green (MG) dye to activate intense fluorescence. Crystallography of liganded L5* reveals a 2:1 protein:ligand complex with inclusive C2 symmetry, where MG is almost entirely encapsulated between an antiparallel arrangement of the two VL domains. Unliganded L5* VL domains crystallize as a similar antiparallel VL/VL homodimer. The complementarity-determining regions are spatially oriented to form novel VL/VL and VL/ligand interfaces that tightly constrain a propeller conformer of MG. Binding equilibrium analysis suggests highly cooperative assembly to form a very stable VL/MG/VL complex, such that MG behaves as a strong chemical inducer of dimerization. Fusion of two VL domains into a single protein tightens MG binding over 1000-fold to low picomolar affinity without altering the large binding enthalpy, suggesting that bonding interactions with ligand and restriction of domain movements make independent contributions to binding. Fluorescence activation of a symmetrical fluorogen provides a selection mechanism for the isolation and directed evolution of ternary complexes where unnatural symmetric binding interfaces are favored over canonical antibody interfaces. As exemplified by L5*, these self-reporting complexes may be useful as modulators of protein association or as high-affinity protein tags and capture reagents.
我们报告称,一种对称的小分子配体介导抗体轻链可变区(VL)组装成具有新界面的相应对称三元复合物。L5荧光素激活蛋白是一个 VL 结构域,它与孔雀石绿(MG)染料结合以激活强烈的荧光。配体结合的 L5的晶体学揭示了一个 2:1 的蛋白质:配体复合物,具有包容性 C2 对称性,其中 MG 几乎完全被两个 VL 结构域的反平行排列包裹。未配体结合的 L5VL 结构域结晶为类似的 VL/VL 同源二聚体。互补决定区(CDRs)在空间上定向形成新的 VL/VL 和 VL/配体界面,这些界面紧密限制了 MG 的推进器构象。结合平衡分析表明,高度协同组装形成非常稳定的 VL/MG/VL 复合物,使得 MG 作为二聚化的强化学诱导剂。两个 VL 结构域融合成一个单一蛋白质会使 MG 结合紧密 1000 倍以上,亲和力达到低皮摩尔水平,而不会改变大的结合焓,这表明与配体的结合相互作用和对结构域运动的限制对结合有独立的贡献。对称荧光素的荧光激活为三元复合物的分离和定向进化提供了一种选择机制,其中非天然对称结合界面优先于经典抗体界面。以 L5为例,这些自报告复合物可用作蛋白质缔合的调节剂或作为高亲和力的蛋白质标签和捕获试剂。