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Altered TMPRSS2 usage by SARS-CoV-2 Omicron impacts infectivity and fusogenicity B Meng, A Abdullahi, IATM Ferreira, N Goonawardane, A Saito, I Kimura, ... Nature 603 (7902), 706-714, 2022 | 885 | 2022 |
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Neurodevelopmental protein Musashi-1 interacts with the Zika genome and promotes viral replication PL Chavali, L Stojic, LW Meredith, N Joseph, MS Nahorski, TJ Sanford, ... Science 357 (6346), 83-88, 2017 | 171 | 2017 |
Defining the transcriptional landscape during cytomegalovirus latency with single-cell RNA sequencing M Shnayder, A Nachshon, B Krishna, E Poole, A Boshkov, A Binyamin, ... MBio 9 (2), 10.1128/mbio. 00013-18, 2018 | 156 | 2018 |
The immunology of human cytomegalovirus latency: could latent infection be cleared by novel immunotherapeutic strategies? MR Wills, E Poole, B Lau, B Krishna, JH Sinclair Cellular & molecular immunology 12 (2), 128-138, 2015 | 152 | 2015 |
SARS-CoV-2 B. 1.617 mutations L452R and E484Q are not synergistic for antibody evasion IATM Ferreira, SA Kemp, R Datir, A Saito, B Meng, P Rakshit, ... The Journal of infectious diseases 224 (6), 989-994, 2021 | 151 | 2021 |
An endoglycosidase with alternative glycan specificity allows broadened glycoprotein remodelling JJ Goodfellow, K Baruah, K Yamamoto, C Bonomelli, B Krishna, ... Journal of the American Chemical Society 134 (19), 8030-8033, 2012 | 151 | 2012 |
Latency-associated expression of human cytomegalovirus US28 attenuates cell signaling pathways to maintain latent infection BA Krishna, EL Poole, SE Jackson, MJ Smit, MR Wills, JH Sinclair MBio 8 (6), 10.1128/mbio. 01754-17, 2017 | 90 | 2017 |
The expression of human cytomegalovirus microRNA MiR-UL148D during latent infection in primary myeloid cells inhibits activin A-triggered secretion of IL-6 B Lau, E Poole, B Krishna, I Montanuy, MR Wills, E Murphy, J Sinclair Scientific reports 6 (1), 31205, 2016 | 85 | 2016 |
Advances in the treatment of cytomegalovirus BA Krishna, MR Wills, JH Sinclair British Medical Bulletin 131 (1), 5, 2019 | 79 | 2019 |
Selective deactivation of serum IgG: a general strategy for the enhancement of monoclonal antibody receptor interactions K Baruah, TA Bowden, BA Krishna, RA Dwek, M Crispin, CN Scanlan Journal of molecular biology 420 (1-2), 1-7, 2012 | 73 | 2012 |
Targeting the latent cytomegalovirus reservoir with an antiviral fusion toxin protein BA Krishna, K Spiess, EL Poole, B Lau, S Voigt, TN Kledal, ... Nature Communications 8 (1), 14321, 2017 | 69 | 2017 |
Transient activation of human cytomegalovirus lytic gene expression during latency allows cytotoxic T cell killing of latently infected cells BA Krishna, B Lau, SE Jackson, MR Wills, JH Sinclair, E Poole Scientific reports 6 (1), 24674, 2016 | 60 | 2016 |
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Alveolar macrophages isolated directly from human cytomegalovirus (HCMV)–seropositive individuals are sites of HCMV reactivation in vivo E Poole, JK Juss, B Krishna, J Herre, ER Chilvers, J Sinclair The Journal of Infectious Diseases 211 (12), 1936-1942, 2015 | 57 | 2015 |
Human cytomegalovirus G protein-coupled receptor US28 promotes latency by attenuating c-fos BA Krishna, MS Humby, WE Miller, CM O’Connor Proceedings of the National Academy of Sciences 116 (5), 1755-1764, 2019 | 51 | 2019 |
B cell receptor repertoire kinetics after SARS-CoV-2 infection and vaccination P Kotagiri, F Mescia, WM Rae, L Bergamaschi, ZK Tuong, L Turner, ... Cell reports 38 (7), 2022 | 38 | 2022 |
Interferon-responsive genes are targeted during the establishment of human cytomegalovirus latency EG Elder, BA Krishna, J Williamson, EY Lim, E Poole, GX Sedikides, ... MBio 10 (6), 10.1128/mbio. 02574-19, 2019 | 32 | 2019 |
Monocytes latently infected with human cytomegalovirus evade neutrophil killing E Elder, B Krishna, J Williamson, Y Aslam, N Farahi, A Wood, ... Iscience 12, 13-26, 2019 | 32 | 2019 |