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Miroslav Krepl

Showing results (41-50 of 55) with videos related to

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Physical Chemistry Chemical Physics : PCCP|April 12, 2013
Benchmark quantum-chemical calculations on a complete set of rotameric families of the DNA sugar-phosphate backbone and their comparison with modern density functional theoryArnošt Mládek, Miroslav Krepl, Daniel Svozil, et al.
Journal of Chemical Theory and Computation|November 20, 2020
UUCG RNA Tetraloop as a Formidable Force-Field Challenge for MD SimulationsKlaudia Mráziková, Vojtěch Mlýnský, Petra Kührová, et al.
Journal of Chemical Theory and Computation|March 22, 2019
Improving the Performance of the Amber RNA Force Field by Tuning the Hydrogen-Bonding InteractionsPetra Kührová, Vojtěch Mlýnský, Marie Zgarbová, et al.
Nature Communications|September 23, 2017
Aromatic side-chain conformational switch on the surface of the RNA Recognition Motif enables RNA discriminationNana Diarra Dit Konté, Miroslav Krepl, Fred F Damberger, et al.
Nucleic Acids Research|August 24, 2024
N-terminal domain of polypyrimidine-tract binding protein is a dynamic folding platform for adaptive RNA recognitionFred F Damberger, Miroslav Krepl, Rajika Arora, et al.
Nature Communications|June 6, 2022
The influence of Holliday junction sequence and dynamics on DNA crystal self-assemblyChad R Simmons, Tara MacCulloch, Miroslav Krepl, et al.
Biophysical Chemistry|November 6, 2024
The Drosophila RNA binding protein Hrp48 binds a specific RNA sequence of the msl-2 mRNA 3' UTR to regulate translationAndrea Lomoschitz, Julia Meyer, Tanit Guitart, et al.
Research Square|May 5, 2025
Newton's cradle-like allosteric mechanism explains regulatory RsmE RNA bindingEsteban Finol, Fred F Damberger, Miroslav Krepl, et al.
Nature Communications|April 22, 2026
Newton's cradle-like allosteric mechanism explains regulatory RsmE RNA bindingEsteban Finol, Fred F Damberger, Miroslav Krepl, et al.
Nucleic Acids Research|January 27, 2025
Transcriptome-scale analysis uncovers conserved residues in the hydrophobic core of the bacterial RNA chaperone Hfq required for small regulatory RNA stabilityJosh McQuail, Miroslav Krepl, Kai Katsuya-Gaviria, et al.
Pageof 6

Showing results (41-50 of 55) with videos related to

Sort By:
Pageof 6
Physical Chemistry Chemical Physics : PCCP|April 12, 2013
Benchmark quantum-chemical calculations on a complete set of rotameric families of the DNA sugar-phosphate backbone and their comparison with modern density functional theoryArnošt Mládek, Miroslav Krepl, Daniel Svozil, et al.
Journal of Chemical Theory and Computation|November 20, 2020
UUCG RNA Tetraloop as a Formidable Force-Field Challenge for MD SimulationsKlaudia Mráziková, Vojtěch Mlýnský, Petra Kührová, et al.
Journal of Chemical Theory and Computation|March 22, 2019
Improving the Performance of the Amber RNA Force Field by Tuning the Hydrogen-Bonding InteractionsPetra Kührová, Vojtěch Mlýnský, Marie Zgarbová, et al.
Nature Communications|September 23, 2017
Aromatic side-chain conformational switch on the surface of the RNA Recognition Motif enables RNA discriminationNana Diarra Dit Konté, Miroslav Krepl, Fred F Damberger, et al.
Nucleic Acids Research|August 24, 2024
N-terminal domain of polypyrimidine-tract binding protein is a dynamic folding platform for adaptive RNA recognitionFred F Damberger, Miroslav Krepl, Rajika Arora, et al.
Nature Communications|June 6, 2022
The influence of Holliday junction sequence and dynamics on DNA crystal self-assemblyChad R Simmons, Tara MacCulloch, Miroslav Krepl, et al.
Biophysical Chemistry|November 6, 2024
The Drosophila RNA binding protein Hrp48 binds a specific RNA sequence of the msl-2 mRNA 3' UTR to regulate translationAndrea Lomoschitz, Julia Meyer, Tanit Guitart, et al.
Research Square|May 5, 2025
Newton's cradle-like allosteric mechanism explains regulatory RsmE RNA bindingEsteban Finol, Fred F Damberger, Miroslav Krepl, et al.
Nature Communications|April 22, 2026
Newton's cradle-like allosteric mechanism explains regulatory RsmE RNA bindingEsteban Finol, Fred F Damberger, Miroslav Krepl, et al.
Nucleic Acids Research|January 27, 2025
Transcriptome-scale analysis uncovers conserved residues in the hydrophobic core of the bacterial RNA chaperone Hfq required for small regulatory RNA stabilityJosh McQuail, Miroslav Krepl, Kai Katsuya-Gaviria, et al.
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