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Rohit Satija
Rohit Satija
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Title
Cited by
Cited by
Year
Design of a toolbox of RNA thermometers
S Sen, D Apurva, R Satija, D Siegal, RM Murray
ACS synthetic biology 6 (8), 1461-1470, 2017
682017
Transition path times reveal memory effects and anomalous diffusion in the dynamics of protein folding
R Satija, A Das, DE Makarov
The Journal of chemical physics 147 (15), 2017
612017
Generalized Langevin equation as a model for barrier crossing dynamics in biomolecular folding
R Satija, DE Makarov
The Journal of Physical Chemistry B 123 (4), 802-810, 2019
502019
Broad distributions of transition-path times are fingerprints of multidimensionality of the underlying free energy landscapes
R Satija, AM Berezhkovskii, DE Makarov
Proceedings of the National Academy of Sciences 117 (44), 27116-27123, 2020
362020
Transition path times in non-Markovian activated rate processes
E Medina, R Satija, DE Makarov
The Journal of Physical Chemistry B 122 (49), 11400-11413, 2018
352018
Theoretical and computational validation of the Kuhn barrier friction mechanism in unfolded proteins
SM Avdoshenko, A Das, R Satija, GA Papoian, DE Makarov
Scientific Reports 7 (1), 269, 2017
342017
Protein turnover dynamics suggest a diffusion-to-capture mechanism for peri-basal body recruitment and retention of intraflagellar transport proteins
JVK Hibbard, N Vazquez, R Satija, JB Wallingford
Molecular biology of the cell 32 (12), 1171-1180, 2021
252021
Transition path dynamics of a dielectric particle in a bistable optical trap
N Zijlstra, D Nettels, R Satija, DE Makarov, B Schuler
Physical review letters 125 (14), 146001, 2020
232020
Kinetics of loop closure in disordered proteins: Theory vs simulations vs experiments
R Satija, A Das, S Mühle, J Enderlein, DE Makarov
The Journal of Physical Chemistry B 124 (17), 3482-3493, 2020
122020
Insights into the role of ribonuclease 4 polymorphisms in amyotrophic lateral sclerosis
AK Padhi, P Narain, U Dave, R Satija, A Patir, J Gomes
Journal of Biomolecular Structure and Dynamics 37 (1), 116-130, 2019
102019
Understanding structural transitions and dynamics in biomolecules at a single molecule level
R Satija
The University of Texas at Austin, 2020
12020
Rigid DNA nanotube tethers suppress high frequency noise in dual-trap optical tweezers systems
A Shaw, R Satija, EA de Mayolo De la Matta, S Marqusee, C Bustamante
bioRxiv, 2021.11. 15.468716, 2021
2021
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