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Using Continuous Directed Evolution to Improve Enzymes for Plant Applications

Plant Physiol. 2021-10; 
Jorge D García-García, Kristen Van Gelder, Jaya Joshi, Ulschan Bathe, Bryan J Leong, Steven D Bruner, Chang C Liu, Andrew D Hanson
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Recombinant Antibody Expression yeast-codon optimized M. hirudinis THI4 (MhTHI4) without SphI, NsiI, EcoRI, or ScaI restriction sites were synthesized by GenScript (Piscataway, New Jersey). Get A Quote

摘要

Continuous directed evolution of enzymes and other proteins in microbial hosts is capable of outperforming classical directed evolution by executing hypermutation and selection concurrently in vivo, at scale, with minimal manual input. Provided that a target enzyme's activity can be coupled to growth of the host cells, the activity can be improved simply by selecting for growth. Like all directed evolution, the continuous version requires no prior mechanistic knowledge of the target. Continuous directed evolution is thus a powerful way to modify plant or non-plant enzymes for use in plant metabolic research and engineering. Here, we first describe the basic features of the yeast (Saccharomyces cerevisiae) Ortho... More

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