Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, The Netherlands.
Methods Mol Biol. 2025;2850:265-295. doi: 10.1007/978-1-0716-4220-7_15.
Oligo pools are array-synthesized, user-defined mixtures of single-stranded oligonucleotides that can be used as a source of synthetic DNA for library cloning. While currently offering the most affordable source of synthetic DNA, oligo pools also come with limitations such as a maximum synthesis length (approximately 350 bases), a higher error rate compared to alternative synthesis methods, and the presence of truncated molecules in the pool due to incomplete synthesis. Here, we provide users with a comprehensive protocol that details how oligo pools can be used in combination with Golden Gate cloning to create user-defined protein mutant libraries, as well as single-guide RNA libraries for CRISPR applications. Our methods are optimized to work within the Yeast Toolkit Golden Gate scheme, but are in principle compatible with any other Golden Gate-based modular cloning toolkit and extendable to other restriction enzyme-based cloning methods beyond Golden Gate. Our methods yield high-quality, affordable, in-house variant libraries.
寡聚体池是由用户定义的单链寡核苷酸混合物,通过阵列合成,可作为文库克隆的合成 DNA 来源。虽然寡聚体池目前提供了最经济实惠的合成 DNA 来源,但也存在一些限制,例如最大合成长度(约 350 个碱基)、与其他合成方法相比错误率更高,以及由于不完全合成而导致池中的截短分子。在这里,我们为用户提供了一个全面的方案,详细介绍了如何将寡聚体池与 Golden Gate 克隆结合使用,以创建用户定义的蛋白质突变文库,以及用于 CRISPR 应用的单指导 RNA 文库。我们的方法经过优化,可在 Yeast Toolkit Golden Gate 方案中使用,但原则上与任何其他基于 Golden Gate 的模块化克隆工具包兼容,并可扩展到 Golden Gate 之外的其他基于限制性内切酶的克隆方法。我们的方法可生成高质量、经济实惠的内部变体文库。