Rajan Saravanan, Sidhu Sachdev S
Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario, Canada.
Methods Enzymol. 2012;502:3-23. doi: 10.1016/B978-0-12-416039-2.00001-X.
Synthetic antibody libraries are constructed from scratch using designed synthetic DNA. Precise control over design enables the use of highly optimized human frameworks and the introduction of defined chemical diversity at positions that are most likely to contribute to antigen recognition. We describe complete methods for the design, construction, and application of simplified synthetic antibody libraries built on a single human framework with diversity restricted to four complementarity-determining regions and two amino acids (tyrosine and serine). Despite the extreme simplicity of design, these libraries are capable of generating specific antibodies against diverse protein antigens. Moreover, the same methods can be used to build more complex libraries that can produce synthetic antibodies with affinities and specificities beyond the scope of natural antibodies. Most importantly, these simplified methods rely on standard supplies, equipment, and methods that are accessible to any molecular biology laboratory.
合成抗体文库是使用设计好的合成DNA从头构建的。对设计的精确控制使得能够使用高度优化的人源框架,并在最有可能对抗原识别有贡献的位置引入特定的化学多样性。我们描述了基于单一人源框架构建的简化合成抗体文库的设计、构建和应用的完整方法,其多样性仅限于四个互补决定区和两个氨基酸(酪氨酸和丝氨酸)。尽管设计极其简单,但这些文库能够产生针对多种蛋白质抗原的特异性抗体。此外,相同的方法可用于构建更复杂的文库,从而产生亲和力和特异性超出天然抗体范围的合成抗体。最重要的是,这些简化方法依赖于任何分子生物学实验室都可获得的标准耗材、设备和方法。