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寡聚池与 Golden Gate 克隆技术在 CRISPR 应用中创建蛋白质变体文库或向导 RNA 文库的应用。

Combining Oligo Pools and Golden Gate Cloning to Create Protein Variant Libraries or Guide RNA Libraries for CRISPR Applications.

机构信息

Molecular Microbiology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, The Netherlands.

出版信息

Methods Mol Biol. 2025;2850:265-295. doi: 10.1007/978-1-0716-4220-7_15.

Abstract

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.

摘要

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。

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