Department of Structural Biology, Genentech Inc, 1 DNA Way, South San Francisco, CA 94080, USA.
Proc Natl Acad Sci U S A. 2010 Aug 24;107(34):15039-44. doi: 10.1073/pnas.1005025107. Epub 2010 Aug 9.
The human epidermal growth factor receptor 2 (HER2) is specifically overexpressed in tumors of several cancers, including an aggressive form of breast cancer. It is therefore a target for both cancer diagnostics and therapy. The 58 amino acid residue Zher2 affibody molecule was previously engineered as a high-affinity binder of HER2. Here we determined the structure of Zher2 in solution and the crystal structure of Zher2 in complex with the HER2 extracellular domain. Zher2 binds to a conformational epitope on HER2 that is distant from those recognized by the therapeutic antibodies trastuzumab and pertuzumab. Its small size and lack of interference may provide Zher2 with advantages for diagnostic use or even for delivery of therapeutic agents to HER2-expressing tumors when trastuzumab or pertuzumab are already employed. Biophysical characterization shows that Zher2 is thermodynamically stable in the folded state yet undergoing conformational interconversion on a submillisecond time scale. The data suggest that it is the HER2-binding conformation that is formed transiently prior to binding. Still, binding is very strong with a dissociation constant K(D) = 22 pM, and perfect conformational homogeneity is therefore not necessarily required in engineered binding proteins. A comparison of the original Z domain scaffold to free and bound Zher2 structures reveals how high-affinity binding has evolved during selection and affinity maturation and suggests how a compromise between binding surface optimization and stability and dynamics of the unbound state has been reached.
人表皮生长因子受体 2(HER2)在多种癌症的肿瘤中特异性过表达,包括一种侵袭性乳腺癌。因此,它是癌症诊断和治疗的靶点。58 个氨基酸残基的 Zher2 亲和体分子先前被设计为 HER2 的高亲和力结合物。在这里,我们确定了 Zher2 在溶液中的结构和 Zher2 与 HER2 细胞外结构域复合物的晶体结构。Zher2 结合到 HER2 上的构象表位,该表位与曲妥珠单抗和帕妥珠单抗识别的表位不同。它的体积小且不干扰,这可能为其在诊断中的应用甚至在曲妥珠单抗或帕妥珠单抗已被使用时将治疗剂递送到 HER2 表达肿瘤提供优势。生物物理特性表明,Zher2 在折叠状态下热力学稳定,但在亚毫秒时间尺度上发生构象转换。数据表明,在结合之前,形成的是 HER2 结合构象。尽管如此,其解离常数 K(D) = 22 pM,因此与结合非常强,因此在工程结合蛋白中不一定需要完美的构象均一性。原始 Z 结构域支架与游离和结合的 Zher2 结构的比较揭示了在选择和亲和力成熟过程中如何进化出高亲和力结合,并且还表明如何在结合表面优化与未结合状态的稳定性和动力学之间达成妥协。