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Tal Einav
Tal Einav
La Jolla Institute for Immunology
Verified email at lji.org - Homepage
Title
Cited by
Cited by
Year
Tuning transcriptional regulation through signaling: a predictive theory of allosteric induction
M Razo-Mejia, SL Barnes, NM Belliveau, G Chure, T Einav, M Lewis, ...
Cell systems 6 (4), 456-469. e10, 2018
682018
Multiplexed characterization of rationally designed promoter architectures deconstructs combinatorial logic for IPTG-inducible systems
TC Yu, WL Liu, MS Brinck, JE Davis, J Shek, G Bower, T Einav, ...
Nature communications 12 (1), 325, 2021
362021
How the avidity of polymerase binding to the–35/–10 promoter sites affects gene expression
T Einav, R Phillips
Proceedings of the National Academy of Sciences 116 (27), 13340-13345, 2019
312019
Statistical mechanics of allosteric enzymes
T Einav, L Mazutis, R Phillips
The Journal of Physical Chemistry B 120 (26), 6021-6037, 2016
302016
Predictive shifts in free energy couple mutations to their phenotypic consequences
G Chure, M Razo-Mejia, NM Belliveau, T Einav, ZA Kaczmarek, ...
Proceedings of the National Academy of Sciences 116 (37), 18275-18284, 2019
252019
Harnessing avidity: quantifying the entropic and energetic effects of linker length and rigidity for multivalent binding of antibodies to HIV-1
T Einav, S Yazdi, A Coey, PJ Bjorkman, R Phillips
Cell systems 9 (5), 466-474. e7, 2019
242019
Combinatorial control through allostery
V Galstyan, L Funk, T Einav, R Phillips
The Journal of Physical Chemistry B 123 (13), 2792-2800, 2019
162019
When two are better than one: Modeling the mechanisms of antibody mixtures
T Einav, JD Bloom
PLoS computational biology 16 (5), e1007830, 2020
152020
Theoretical Analysis of Inducer and Operator Binding for Cyclic-AMP Receptor Protein Mutants
T Einav, J Duque, R Phillips
PLOS One 13 (9), e0204275, 2018
92018
Harnessing low dimensionality to visualize the antibody–virus landscape for influenza
T Einav, A Creanga, SF Andrews, AB McDermott, M Kanekiyo
Nature Computational Science, 1-10, 2022
82022
SnapShot: influenza by the numbers
T Einav, LE Gentles, JD Bloom
Cell 182 (2), 532-532. e1, 2020
82020
Extrapolating missing antibody-virus measurements across serological studies
T Einav, B Cleary
Cell Systems 13 (7), 561-573. e5, 2022
62022
Monod-Wyman-Changeux analysis of Ligand-Gated ion channel mutants
T Einav, R Phillips
The Journal of Physical Chemistry B 121 (15), 3813-3824, 2017
52017
Quantitatively visualizing bipartite datasets
T Einav, Y Khoo, A Singer
Physical Review X 13 (2), 021002, 2023
22023
Using interpretable machine learning to extend heterogeneous antibody-virus datasets
T Einav, R Ma
Cell Reports Methods 3 (8), 2023
2023
Mapping the Antibody Repertoires in Ferrets with Repeated Influenza A/H3 Infections: Is Original Antigenic Sin Really “Sinful”?
T Einav, M Kosikova, P Radvak, YC Kuo, HJ Kwon, H Xie
Viruses 15 (2), 374, 2023
2023
Data-driven model of glycolysis identifies the role of allostery in maintaining ATP homeostasis
M Choe, T Einav, R Phillips, DV Titov
bioRxiv, 2022.12. 28.522046, 2022
2022
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