Clustered Regularly Interspaced Short Palindromic Repeats

Displaying 1 - 6 of 6CSV
Gelsinger, D. R., Vo, P. L. H., Klompe, S. E., Ronda, C., Wang, H. H., & Sternberg, S. H. (2024). Bacterial genome engineering using CRISPR-associated transposases. Nature Protocols, 19(3), 752–790. https://doi.org/10.1038/s41596-023-00927-3
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Pividori, M., Lu, S., Li, B., Su, C., Johnson, M. E., Wei, W.-Q., Feng, Q., Namjou, B., Kiryluk, K., Kullo, I. J., Luo, Y., Sullivan, B. D., Voight, B. F., Skarke, C., Ritchie, M. D., Grant, S. F. A., & Greene, C. S. (2023). Projecting genetic associations through gene expression patterns highlights disease etiology and drug mechanisms. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-41057-4
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Gervais, N. C., La Bella, A. A., Wensing, L. F., Sharma, J., Acquaviva, V., Best, M., Cadena López, R. O., Fogal, M., Uthayakumar, D., Chavez, A., Santiago-Tirado, F., Flores-Mireles, A. L., & Shapiro, R. S. (2022). Development and applications of a CRISPR activation system for facile genetic overexpression in Candida albicans. G3, 13(2). https://doi.org/10.1093/g3journal/jkac301
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Shi, J., Wu, X., Wang, Z., Li, F., Meng, Y., Moore, R. M., Cui, J., Xue, C., Croce, K. R., Yurdagul, A., Doench, J. G., Li, W., Zarbalis, K. S., Tabas, I., Yamamoto, A., & Zhang, H. (2022). A genome-wide CRISPR screen identifies WDFY3 as a regulator of macrophage efferocytosis. Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-35604-8
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