Koide Shohei, Koide Akiko, Lipovšek Daša
Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, Illinois, USA.
Methods Enzymol. 2012;503:135-56. doi: 10.1016/B978-0-12-396962-0.00006-9.
We describe concepts and methods for generating a family of engineered target-binding proteins designed on the scaffold of the 10th human fibronectin type III domain ((10)Fn3), an extremely stable, single-domain protein with an immunoglobulin-like fold but lacking disulfide bonds. Large libraries of possible target-binding proteins can be constructed on the (10)Fn3 scaffold by diversifying the sequence and length of its surface loops, which are structurally analogous to antibody complementarity-determining regions. Target-binding proteins with high affinity and specificity are selected from (10)Fn3-based libraries using in vitro evolution technologies such as phage display, mRNA display, or yeast-surface display. (10)Fn3-based target-binding proteins have binding properties comparable to those of antibodies, but they are smaller, simpler in architecture, and more user-friendly; as a consequence, these proteins are excellent building blocks for the construction of multidomain, multifunctional chains. The ease of engineering and robust properties of (10)Fn3-based target-binding proteins have been validated by multiple independent academic and industrial groups. In addition to performing well as specific in vitro detection reagents and research tools, (10)Fn3-based binding proteins are being developed as therapeutics, with the most advanced candidate currently in Phase II clinical trials.
我们描述了在人源第10个III型纤连蛋白结构域((10)Fn3)支架上设计的一系列工程化靶标结合蛋白的概念和方法。(10)Fn3是一种极其稳定的单结构域蛋白,具有免疫球蛋白样折叠但缺乏二硫键。通过改变其表面环的序列和长度,可以在(10)Fn3支架上构建大量可能的靶标结合蛋白文库,这些表面环在结构上类似于抗体互补决定区。使用噬菌体展示、mRNA展示或酵母表面展示等体外进化技术,从基于(10)Fn3的文库中筛选出具有高亲和力和特异性的靶标结合蛋白。基于(10)Fn3的靶标结合蛋白具有与抗体相当的结合特性,但它们更小,结构更简单,使用更方便;因此,这些蛋白是构建多结构域、多功能链的优秀构件。多个独立的学术和工业团队已经验证了基于(10)Fn3的靶标结合蛋白易于工程化和具有强大的特性。除了作为特异性体外检测试剂和研究工具表现出色外,基于(10)Fn3的结合蛋白正在被开发为治疗药物,目前最先进的候选药物正在进行II期临床试验。