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Alexander Borodavka
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Evidence that viral RNAs have evolved for efficient, two-stage packaging
A Borodavka, R Tuma, PG Stockley
Proceedings of the National Academy of Sciences 109 (39), 15769-15774, 2012
1602012
Packaging signals in single-stranded RNA viruses: nature’s alternative to a purely electrostatic assembly mechanism
PG Stockley, R Twarock, SE Bakker, AM Barker, A Borodavka, ...
Journal of biological physics 39, 277-287, 2013
1092013
Liquid–liquid phase separation underpins the formation of replication factories in rotaviruses
F Geiger, J Acker, G Papa, X Wang, WE Arter, KL Saar, NA Erkamp, R Qi, ...
The EMBO Journal 40 (21), e107711, 2021
74*2021
Protein-mediated RNA folding governs sequence-specific interactions between rotavirus genome segments
A Borodavka, EC Dykeman, W Schrimpf, DC Lamb
elife 6, e27453, 2017
732017
Genome packaging in multi-segmented dsRNA viruses: distinct mechanisms with similar outcomes
JTP Alexander Borodavka, Ulrich Desselberger
Current Opinion in Virology 33, 106–112, 2018
652018
A two-stage mechanism of viral RNA compaction revealed by single molecule fluorescence
A Borodavka, R Tuma, PG Stockley
RNA biology 10 (4), 481-489, 2013
572013
Sizes of long RNA molecules are determined by the branching patterns of their secondary structures
A Borodavka, SW Singaram, PG Stockley, WM Gelbart, A Ben-Shaul, ...
Biophysical journal 111 (10), 2077-2085, 2016
562016
Viroplasms: assembly and functions of rotavirus replication factories
G Papa, A Borodavka, U Desselberger
Viruses 13 (7), 1349, 2021
48*2021
Recombinant rotaviruses rescued by reverse genetics reveal the role of NSP5 hyperphosphorylation in the assembly of viral factories
G Papa, L Venditti, F Arnoldi, EM Schraner, C Potgieter, A Borodavka, ...
Journal of virology 94 (1), 10.1128/jvi. 01110-19, 2019
452019
Stability of local secondary structure determines selectivity of viral RNA chaperones
JPK Bravo, A Borodavka, A Barth, AN Calabrese, P Mojzes, JJB Cockburn, ...
Nucleic acids research 46 (15), 7924-7937, 2018
322018
Evidence that avian reovirus σNS is an RNA chaperone: implications for genome segment assortment
A Borodavka, J Ault, PG Stockley, R Tuma
Nucleic Acids Research 43 (14), 7044-7057, 2015
312015
Rotavirus research: 2014–2020
S Caddy, G Papa, A Borodavka, U Desselberger
Virus research 304, 198499, 2021
282021
Biomolecular condensate phase diagrams with a combinatorial microdroplet platform
WE Arter, R Qi, NA Erkamp, G Krainer, K Didi, TJ Welsh, J Acker, ...
Nature Communications 13 (1), 7845, 2022
272022
Structural basis of rotavirus RNA chaperone displacement and RNA annealing
JPK Bravo, K Bartnik, L Venditti, J Acker, EH Gail, A Colyer, C Davidovich, ...
Proceedings of the National Academy of Sciences 118 (41), e2100198118, 2021
262021
Principles of RNA recruitment to viral ribonucleoprotein condensates in a segmented dsRNA virus
RJ Sebastian Strauss, Julia Acker, Guido Papa, Daniel Desiró, Florian ...
https://doi.org/10.7554/eLife.68670, 2023
11*2023
Using species a rotavirus reverse genetics to engineer chimeric viruses expressing SARS-CoV-2 spike epitopes
O Diebold, V Gonzalez, L Venditti, C Sharp, RA Blake, WS Tan, J Stevens, ...
Journal of Virology 96 (14), e00488-22, 2022
102022
Flexibility of the rotavirus NSP2 C-terminal region supports factory formation via liquid-liquid phase separation
SL Nichols, EM Nilsson, H Brown-Harding, LEW LaConte, J Acker, ...
Journal of virology 97 (2), e00039-23, 2023
72023
Supersensitive Multifluorophore RNA‐FISH for Early Virus Detection and Flow‐FISH by Using Click Chemistry
N Raddaoui, S Croce, F Geiger, A Borodavka, L Möckl, S Stazzoni, ...
ChemBioChem 21 (15), 2214-2218, 2020
72020
Rotavirus RNA chaperone mediates global transcriptome-wide increase in RNA backbone flexibility
A Coria, A Wienecke, ML Knight, D Desirò, A Laederach, A Borodavka
Nucleic Acids Research 50 (17), 10078-10092, 2022
42022
Targeting nucleic acid phase transitions as a mechanism of action for antimicrobial peptides
T Sneideris, NA Erkamp, H Ausserwöger, KL Saar, TJ Welsh, D Qian, ...
Nature Communications 14 (1), 7170, 2023
3*2023
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