Jack Bravo
28 Publications
2025 | Published | Journal Article | IST-REx-ID: 18848 |

R. F. Ocampo et al., “DNA targeting by compact Cas9d and its resurrected ancestor,” Nature Communications, vol. 16. Springer Nature, 2025.
[Published Version]
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| Files available
| DOI
| PubMed | Europe PMC
2025 | In Press | Journal Article | IST-REx-ID: 20143 |
|


Z. Zhang et al., “Kiwa is a membrane-embedded defense supercomplex activated at phage attachment sites,” Cell. Elsevier.
[Published Version]
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| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17113 |

G. N. Hibshman et al., “Unraveling the mechanisms of PAMless DNA interrogation by SpRY-Cas9,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
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| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17114 |

E. A. Schwartz et al., “RNA targeting and cleavage by the type III-Dv CRISPR effector complex,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 18545 |

D. Degtev et al., “Engineered PsCas9 enables therapeutic genome editing in mouse liver with lipid nanoparticles,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| Files available
| DOI
2024 | Published | Journal Article | IST-REx-ID: 17111
A. Kamatar et al., “Lipid droplets as substrates for protein phase separation,” Biophysical Journal, vol. 123, no. 11. Elsevier, pp. 1494–1507, 2024.
View
| DOI
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 15372 |

G. N. Hibshman et al., “Unraveling the mechanisms of PAMless DNA interrogation by SpRY-Cas9,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17442 |

J. P. K. Bravo, D. A. Ramos, R. Fregoso Ocampo, C. Ingram, and D. W. Taylor, “Plasmid targeting and destruction by the DdmDE bacterial defence system,” Nature, vol. 630, no. 8018. Springer Nature, pp. 961–967, 2024.
[Submitted Version]
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| DOI
| Download Submitted Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17494 |

J. P. K. Bravo, “Anti-plasmid immunity: A key to pathogen success?,” Future Microbiology, vol. 19, no. 15. Taylor & Francis, pp. 1269–1272, 2024.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2023 | Published | Preprint | IST-REx-ID: 17112 |

J. A. Steens et al., “Type III-B CRISPR-Cas signaling-based cascade of proteolytic cleavages,” bioRxiv. Cold Spring Harbor Laboratory, 2023.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2023 | Published | Journal Article | IST-REx-ID: 15129 |

R. E. O’Brien, J. P. K. Bravo, D. Ramos, G. N. Hibshman, J. T. Wright, and D. W. Taylor, “Structural snapshots of R-loop formation by a type I-C CRISPR Cascade,” Molecular Cell, vol. 83, no. 5. Elsevier, p. 746–758.e5, 2023.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2023 | Published | Journal Article | IST-REx-ID: 15130 |

J. P. K. Bravo, T. Hallmark, B. Naegle, C. L. Beisel, R. N. Jackson, and D. W. Taylor, “RNA targeting unleashes indiscriminate nuclease activity of CRISPR–Cas12a2,” Nature, vol. 613, no. 7944. Springer Nature, pp. 582–587, 2023.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Preprint | IST-REx-ID: 17115 |

R. E. O’Brien, J. P. K. Bravo, D. Ramos, G. N. Hibshman, J. T. Wright, and D. W. Taylor, “Modes of inhibition used by phage anti-CRISPRs to evade type I-C Cascade,” bioRxiv. Cold Spring Harbor Laboratory, 2022.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Submitted | Preprint | IST-REx-ID: 17116 |

E. A. Schwartz et al., “Assembly of multi-subunit fusion proteins into the RNA-targeting type III-D CRISPR-Cas effector complex,” bioRxiv. Cold Spring Harbor Laboratory.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Published | Preprint | IST-REx-ID: 17117 |

J. P. K. Bravo, T. Hallmark, B. Naegle, C. L. Beisel, R. N. Jackson, and D. W. Taylor, “Large-scale structural rearrangements unleash indiscriminate nuclease activity of CRISPR-Cas12a2,” bioRxiv. Cold Spring Harbor Laboratory, 2022.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Published | Journal Article | IST-REx-ID: 15131 |

J. N. Yelland, J. P. K. Bravo, J. J. Black, D. W. Taylor, and A. W. Johnson, “A single 2′-O-methylation of ribosomal RNA gates assembly of a functional ribosome,” Nature Structural & Molecular Biology, vol. 30. Springer Nature, pp. 91–98, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15132
J. P. K. Bravo, G. N. Hibshman, and D. W. Taylor, “Constructing next-generation CRISPR–Cas tools from structural blueprints,” Current Opinion in Biotechnology, vol. 78. Elsevier, 2022.
View
| DOI
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15133 |

J. P. K. Bravo, C. Aparicio-Maldonado, F. L. Nobrega, S. J. J. Brouns, and D. W. Taylor, “Structural basis for broad anti-phage immunity by DISARM,” Nature Communications, vol. 13. Springer Nature, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15134 |

E. A. Schwartz et al., “Structural rearrangements allow nucleic acid discrimination by type I-D Cascade,” Nature Communications, vol. 13. Springer Nature, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15136 |

J. P. K. Bravo et al., “Structural basis for mismatch surveillance by CRISPR–Cas9,” Nature, vol. 603, no. 7900. Springer Nature, pp. 343–347, 2022.
[Published Version]
View
| Files available
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15137 |

J. A. Steens et al., “SCOPE enables type III CRISPR-Cas diagnostics using flexible targeting and stringent CARF ribonuclease activation,” Nature Communications, vol. 12. Springer Nature, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15138 |

F. Geiger et al., “Liquid–liquid phase separation underpins the formation of replication factories in rotaviruses,” The EMBO Journal, vol. 40, no. 21. Embo Press, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15139 |

J. P. K. Bravo et al., “Structural basis of rotavirus RNA chaperone displacement and RNA annealing,” Proceedings of the National Academy of Sciences, vol. 118, no. 41. Proceedings of the National Academy of Sciences, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15140 |

J. P. K. Bravo, T. L. Dangerfield, D. W. Taylor, and K. A. Johnson, “Remdesivir is a delayed translocation inhibitor of SARS-CoV-2 replication,” Molecular Cell, vol. 81, no. 7. Elsevier, p. 1548–1552.e4, 2021.
[Preprint]
View
| DOI
| Download Preprint (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15141 |

Y. Zhou et al., “Structure of a type IV CRISPR-Cas ribonucleoprotein complex,” iScience, vol. 24, no. 3. Elsevier, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2020 | Published | Journal Article | IST-REx-ID: 15142 |

R. E. O’Brien et al., “Structural basis for assembly of non-canonical small subunits into type I-C Cascade,” Nature Communications, vol. 11. Springer Nature, 2020.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2018 | Published | Journal Article | IST-REx-ID: 15143 |

J. P. K. Bravo et al., “Stability of local secondary structure determines selectivity of viral RNA chaperones,” Nucleic Acids Research, vol. 46, no. 15. Oxford University Press, pp. 7924–7937, 2018.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
Grants
28 Publications
2025 | Published | Journal Article | IST-REx-ID: 18848 |

R. F. Ocampo et al., “DNA targeting by compact Cas9d and its resurrected ancestor,” Nature Communications, vol. 16. Springer Nature, 2025.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2025 | In Press | Journal Article | IST-REx-ID: 20143 |
|


Z. Zhang et al., “Kiwa is a membrane-embedded defense supercomplex activated at phage attachment sites,” Cell. Elsevier.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17113 |

G. N. Hibshman et al., “Unraveling the mechanisms of PAMless DNA interrogation by SpRY-Cas9,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17114 |

E. A. Schwartz et al., “RNA targeting and cleavage by the type III-Dv CRISPR effector complex,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 18545 |

D. Degtev et al., “Engineered PsCas9 enables therapeutic genome editing in mouse liver with lipid nanoparticles,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| Files available
| DOI
2024 | Published | Journal Article | IST-REx-ID: 17111
A. Kamatar et al., “Lipid droplets as substrates for protein phase separation,” Biophysical Journal, vol. 123, no. 11. Elsevier, pp. 1494–1507, 2024.
View
| DOI
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 15372 |

G. N. Hibshman et al., “Unraveling the mechanisms of PAMless DNA interrogation by SpRY-Cas9,” Nature Communications, vol. 15. Springer Nature, 2024.
[Published Version]
View
| Files available
| DOI
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17442 |

J. P. K. Bravo, D. A. Ramos, R. Fregoso Ocampo, C. Ingram, and D. W. Taylor, “Plasmid targeting and destruction by the DdmDE bacterial defence system,” Nature, vol. 630, no. 8018. Springer Nature, pp. 961–967, 2024.
[Submitted Version]
View
| DOI
| Download Submitted Version (ext.)
| PubMed | Europe PMC
2024 | Published | Journal Article | IST-REx-ID: 17494 |

J. P. K. Bravo, “Anti-plasmid immunity: A key to pathogen success?,” Future Microbiology, vol. 19, no. 15. Taylor & Francis, pp. 1269–1272, 2024.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2023 | Published | Preprint | IST-REx-ID: 17112 |

J. A. Steens et al., “Type III-B CRISPR-Cas signaling-based cascade of proteolytic cleavages,” bioRxiv. Cold Spring Harbor Laboratory, 2023.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2023 | Published | Journal Article | IST-REx-ID: 15129 |

R. E. O’Brien, J. P. K. Bravo, D. Ramos, G. N. Hibshman, J. T. Wright, and D. W. Taylor, “Structural snapshots of R-loop formation by a type I-C CRISPR Cascade,” Molecular Cell, vol. 83, no. 5. Elsevier, p. 746–758.e5, 2023.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2023 | Published | Journal Article | IST-REx-ID: 15130 |

J. P. K. Bravo, T. Hallmark, B. Naegle, C. L. Beisel, R. N. Jackson, and D. W. Taylor, “RNA targeting unleashes indiscriminate nuclease activity of CRISPR–Cas12a2,” Nature, vol. 613, no. 7944. Springer Nature, pp. 582–587, 2023.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Preprint | IST-REx-ID: 17115 |

R. E. O’Brien, J. P. K. Bravo, D. Ramos, G. N. Hibshman, J. T. Wright, and D. W. Taylor, “Modes of inhibition used by phage anti-CRISPRs to evade type I-C Cascade,” bioRxiv. Cold Spring Harbor Laboratory, 2022.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Submitted | Preprint | IST-REx-ID: 17116 |

E. A. Schwartz et al., “Assembly of multi-subunit fusion proteins into the RNA-targeting type III-D CRISPR-Cas effector complex,” bioRxiv. Cold Spring Harbor Laboratory.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Published | Preprint | IST-REx-ID: 17117 |

J. P. K. Bravo, T. Hallmark, B. Naegle, C. L. Beisel, R. N. Jackson, and D. W. Taylor, “Large-scale structural rearrangements unleash indiscriminate nuclease activity of CRISPR-Cas12a2,” bioRxiv. Cold Spring Harbor Laboratory, 2022.
[Preprint]
View
| DOI
| Download Preprint (ext.)
2022 | Published | Journal Article | IST-REx-ID: 15131 |

J. N. Yelland, J. P. K. Bravo, J. J. Black, D. W. Taylor, and A. W. Johnson, “A single 2′-O-methylation of ribosomal RNA gates assembly of a functional ribosome,” Nature Structural & Molecular Biology, vol. 30. Springer Nature, pp. 91–98, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15132
J. P. K. Bravo, G. N. Hibshman, and D. W. Taylor, “Constructing next-generation CRISPR–Cas tools from structural blueprints,” Current Opinion in Biotechnology, vol. 78. Elsevier, 2022.
View
| DOI
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15133 |

J. P. K. Bravo, C. Aparicio-Maldonado, F. L. Nobrega, S. J. J. Brouns, and D. W. Taylor, “Structural basis for broad anti-phage immunity by DISARM,” Nature Communications, vol. 13. Springer Nature, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15134 |

E. A. Schwartz et al., “Structural rearrangements allow nucleic acid discrimination by type I-D Cascade,” Nature Communications, vol. 13. Springer Nature, 2022.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2022 | Published | Journal Article | IST-REx-ID: 15136 |

J. P. K. Bravo et al., “Structural basis for mismatch surveillance by CRISPR–Cas9,” Nature, vol. 603, no. 7900. Springer Nature, pp. 343–347, 2022.
[Published Version]
View
| Files available
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15137 |

J. A. Steens et al., “SCOPE enables type III CRISPR-Cas diagnostics using flexible targeting and stringent CARF ribonuclease activation,” Nature Communications, vol. 12. Springer Nature, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15138 |

F. Geiger et al., “Liquid–liquid phase separation underpins the formation of replication factories in rotaviruses,” The EMBO Journal, vol. 40, no. 21. Embo Press, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15139 |

J. P. K. Bravo et al., “Structural basis of rotavirus RNA chaperone displacement and RNA annealing,” Proceedings of the National Academy of Sciences, vol. 118, no. 41. Proceedings of the National Academy of Sciences, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15140 |

J. P. K. Bravo, T. L. Dangerfield, D. W. Taylor, and K. A. Johnson, “Remdesivir is a delayed translocation inhibitor of SARS-CoV-2 replication,” Molecular Cell, vol. 81, no. 7. Elsevier, p. 1548–1552.e4, 2021.
[Preprint]
View
| DOI
| Download Preprint (ext.)
| PubMed | Europe PMC
2021 | Published | Journal Article | IST-REx-ID: 15141 |

Y. Zhou et al., “Structure of a type IV CRISPR-Cas ribonucleoprotein complex,” iScience, vol. 24, no. 3. Elsevier, 2021.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2020 | Published | Journal Article | IST-REx-ID: 15142 |

R. E. O’Brien et al., “Structural basis for assembly of non-canonical small subunits into type I-C Cascade,” Nature Communications, vol. 11. Springer Nature, 2020.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC
2018 | Published | Journal Article | IST-REx-ID: 15143 |

J. P. K. Bravo et al., “Stability of local secondary structure determines selectivity of viral RNA chaperones,” Nucleic Acids Research, vol. 46, no. 15. Oxford University Press, pp. 7924–7937, 2018.
[Published Version]
View
| DOI
| Download Published Version (ext.)
| PubMed | Europe PMC