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AN IN VIVO LIBRARY-VERSUS-LIBRARY SELECTION OF OPTIMIZED PROTEIN-PROTEIN INTERACTIONS

机译:最佳蛋白质-蛋白质相互作用的体内文库对文库选择

摘要

The present invention describes a rapid and efficient in vivo library-versus-library screening strategy for identifying optimally interacting pairs of heterodimerizing polypeptides. It allows for the screening of a protein library against a second protein library, rather than against a single bait protein, and thus has numerous applications in the study of protein-protein interactions. Additionally, it allows for the application of different selection stringencies. Two leucine zipper libraries, semi-randomized at the positions adjacent to the hydrophobic core, were genetically fused to either one of two designed fragments of the enzyme murine dihydrofolate reductase (mDHFR), and cotransformed into E. coli. Interaction between the library polypeptides was required for reconstitution of the enzymatic activity of mDHFR, allowing bacterial growth. Analysis of the resulting colonies revealed important biases in the zipper sequences relative to the original libraries, which are consistent with selection for stable, heterodimerizing pairs. Using more weakly associating mDHFR fragments, we increased the stringency of selection. We enriched the best performing leucine zipper pairs by multiple passaging of the pooled, selected colonies in liquid culture, as the best pairs allowed for better bacterial propagation. This competitive growth allowed small differences among the pairs to be amplified, and different sequence positions were enriched at different rates. We applied these selection processes to a library-versus-library sample of 2.0 x 106 combinations, and selected a novel leucine zipper pair which may be appropriate for use in further in vivo heterodimerization strategies.
机译:本发明描述了一种快速有效的体内文库对文库筛选策略,用于鉴定异二聚体多肽的最佳相互作用对。它允许针对第二蛋白质文库而不是针对单一诱饵蛋白质筛选蛋白质文库,因此在蛋白质-蛋白质相互作用的研究中具有许多应用。另外,它允许应用不同的选择严格性。将两个与疏水核心相邻的位置半随机化的亮氨酸拉链文库与鼠二氢叶酸还原酶(mDHFR)酶的两个设计片段之一遗传融合,并共转化为大肠杆菌。重组mDHFR的酶活性需要文库多肽之间的相互作用,从而允许细菌生长。对产生的菌落的分析显示,相对于原始文库,拉链序列存在重要偏差,这与对稳定的异二聚体对的选择相一致。使用更弱关联的mDHFR片段,我们增加了选择的严格性。我们通过在液体培养中对合并的选定菌落进行多次传代来富集性能最佳的亮氨酸拉链对,因为最佳的对允许更好的细菌繁殖。这种竞争性增长使对之间的微小差异得以扩增,并且不同的序列位置以不同的速率富集。我们将这些选择过程应用于2.0 x 106组合的库对库样本,并选择了可能适用于进一步体内异二聚化策略的新型亮氨酸拉链对。

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