DrDaniel Goncalves Carneiro
Imperial College Research Fellow
Department of Infectious Disease - Faculty of Medicine
Orcid identifier0000-0002-9333-1540 (opens in a new tab)
- Imperial College Research FellowDepartment of Infectious Disease - Faculty of Medicine
- 153, Sir Alexander Fleming Building, South Kensington Campus, United Kingdom
RESEARCH
Key Publications
Rational attenuation of RNA viruses with zinc finger antiviral protein. Daniel Gonçalves-Carneiro, Emily Mastrocola, Xiao Lei, et al. (2022) Nature Microbiology. PMID: 36075961
Origin and evolution of the zinc finger antiviral protein. Daniel Gonçalves-Carneiro, Matthew A Takata, Heley Ong, et al. (2021) PLoS Pathogens. PMID: 33901262
Structure of the zinc-finger antiviral protein in complex with RNA reveals a mechanism for selective targeting of CG-rich viral sequences. Jennifer L Meagher, Matthew Takata, Daniel Gonçalves-Carneiro, et al. (2019) PNAS. PMID: 31719195
CG dinucleotide suppression enables antiviral defence targeting non-self RNA. Matthew A Takata, Daniel Gonçalves-Carneiro, Trinity M Zang, et al. (2017) Nature. PMID: 28953888
Rational attenuation of RNA viruses with zinc finger antiviral protein. Daniel Gonçalves-Carneiro, Emily Mastrocola, Xiao Lei, et al. (2022) Nature Microbiology. PMID: 36075961
Origin and evolution of the zinc finger antiviral protein. Daniel Gonçalves-Carneiro, Matthew A Takata, Heley Ong, et al. (2021) PLoS Pathogens. PMID: 33901262
Structure of the zinc-finger antiviral protein in complex with RNA reveals a mechanism for selective targeting of CG-rich viral sequences. Jennifer L Meagher, Matthew Takata, Daniel Gonçalves-Carneiro, et al. (2019) PNAS. PMID: 31719195
CG dinucleotide suppression enables antiviral defence targeting non-self RNA. Matthew A Takata, Daniel Gonçalves-Carneiro, Trinity M Zang, et al. (2017) Nature. PMID: 28953888