Sato Wakana, Sharon Judee, Cash Brock, Deich Christopher, Gaut Nathaniel J, Heili Joseph, Engelhart Aaron E, Adamala Katarzyna P
Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN US.
bioRxiv. 2025 Aug 29:2025.08.28.672974. doi: 10.1101/2025.08.28.672974.
In this work, we present a streamlined one-pot cloning and protein expression platform that integrates mutagenesis, plasmid assembly, and functional protein testing in a single reaction. By combining Golden Gate cloning with cell-free transcription-translation, we demonstrate efficient generation and screening of genetic variants without the need for intermediate purification or bacterial amplification. Using fluorescent proteins, luciferase enzymes, antibiotic-converting enzymes, and the violacein biosynthetic pathway, we validate the versatility of this approach for single- and multi-site mutagenesis, combinatorial variant libraries, metabolic pathway programming, and whole-plasmid assembly. By demonstrating compatibility with multiplexed reactions and multi-cistronic constructs, we establish this approach as a generalizable and automatable method for high-throughput cloning and protein engineering in synthetic biology.
在本研究中,我们展示了一个简化的一锅式克隆和蛋白质表达平台,该平台在单一反应中整合了诱变、质粒组装和功能性蛋白质测试。通过将金门克隆与无细胞转录-翻译相结合,我们证明了无需中间纯化或细菌扩增即可高效生成和筛选遗传变体。利用荧光蛋白、荧光素酶、抗生素转化酶和紫菌素生物合成途径,我们验证了该方法在单位点和多位点诱变、组合变体文库、代谢途径编程和全质粒组装方面的通用性。通过证明与多重反应和多顺反子构建体的兼容性,我们将该方法确立为合成生物学中高通量克隆和蛋白质工程的一种可推广且可自动化的方法。