DNA Transposable Elements

Displaying 1 - 6 of 6CSV
Vaysset, H., Meers, C., Cury, J., Bernheim, A., & Sternberg, S. H. (2025). Evolutionary origins of archaeal and eukaryotic RNA-guided RNA modification in bacterial IS110 transposons. Nature Microbiology, 10(1), 20–27. https://doi.org/10.1038/s41564-024-01889-2
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Žedaveinytė, R., Meers, C., Le, H. C., Mortman, E. E., Tang, S., Lampe, G. D., Pesari, S. R., Gelsinger, D. R., Wiegand, T., & Sternberg, S. H. (2024). Antagonistic conflict between transposon-encoded introns and guide RNAs. Science, 385(6705). https://doi.org/10.1126/science.adm8189
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Wiegand, T., Hoffmann, F. T., Walker, M. W. G., Tang, S., Richard, E., Le, H. C., Meers, C., & Sternberg, S. H. (2024). TnpB homologues exapted from transposons are RNA-guided transcription factors. Nature, 631(8020), 439–448. https://doi.org/10.1038/s41586-024-07598-4
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George, J. T., Acree, C., Park, J.-U., Kong, M., Wiegand, T., Pignot, Y. L., Kellogg, E. H., Greene, E. C., & Sternberg, S. H. (2023). Mechanism of target site selection by type V-K CRISPR-associated transposases. Science, 382(6672). https://doi.org/10.1126/science.adj8543
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Meers, C., Le, H. C., Pesari, S. R., Hoffmann, F. T., Walker, M. W. G., Gezelle, J., Tang, S., & Sternberg, S. H. (2023). Transposon-encoded nucleases use guide RNAs to promote their selfish spread. Nature, 622(7984), 863–871. https://doi.org/10.1038/s41586-023-06597-1
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