bioRxiv · 10.1101/2021.06.16.448102
Define protein variant functions with high-complexity mutagenesis libraries and enhanced mutation detection software
Abstract
Pooled variant expression libraries can test the phenotypes of thousands of variants of a gene in a single multiplexed experiment. In a library encoding all single-amino-acid substitutions of a protein, each variant differs from its reference only at a single codon-position located anywhere along the coding sequence. Consequently, accurately identifying these variants by sequencing is a major technical challenge. A popular but expensive brute-force approach is to divide the pool of variants into multiple smaller sub-libraries that each contains variants of a small region and that must each be constructed and screened individually, but that can then be PCR-amplified and fully sequenced with a single read to allow direct readout of variant abundance. Here we present an approach to screen very large variant libraries with mutations spanning a wide region in a single pool, including library design criteria and mutant-detection algorithms that permit reliable calling and counting of variants from large-scale sequencing data.
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Yang, X., Hong, A. L., Sharpe, T., Giacomelli, A. O., Lintner, R. E., Alan, D., Green, T., Hayes, T. K., Piccioni, F., Fritchman, B., Kawabe, H., Sawyer, E., Sprenkle, L., Lee, B. P., Persky, N. S., Brown, A., Greulich, H., Aguirre, A. J., Meyerson, M., Hahn, W. C., Johannessen, C. M., Root, D. E.. 2021-06-19. Define protein variant functions with high-complexity mutagenesis libraries and enhanced mutation detection software. https://doi.org/10.1101/2021.06.16.448102
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