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Journal of Colloid and Interface Science|June 28, 2024
Deprotonation of formic, acetic acids and bicarbonate ion in slit silica nanopores at infinite dilution and in the presence of electrolytesAnthony P Baldo, Anastasia G Ilgen, Kevin LeungThe Journal of Physical Chemistry. B|November 2, 2020
Mechanochemical Function of Myosin II: Investigation into the Recovery Stroke and ATP HydrolysisAnthony P Baldo, Jil C Tardiff, Steven D SchwartzThe Journal of Physical Chemistry Letters|April 1, 2021
A Proposed Mechanism for the Initial Myosin Binding Event on the Cardiac Thin Filament: A Metadynamics StudyAnthony P Baldo, Jil C Tardiff, Steven D SchwartzThe Journal of Physical Chemistry. B|June 9, 2021
Investigation of the Recovery Stroke and ATP Hydrolysis and Changes Caused Due to the Cardiomyopathic Point Mutations in Human Cardiac β MyosinAnanya Chakraborti, Anthony P Baldo, Jil C Tardiff, et al.Biochemistry|June 13, 2022
Structure and Dynamics of the Flexible Cardiac Troponin T Linker Domain in a Fully Reconstituted Thin FilamentAndrea E Deranek, Anthony P Baldo, Melissa L Lynn, et al.RSC Advances|August 3, 2023
Formic and acetic acid pKa values increase under nanoconfinementIzaac Sit, Bidemi T Fashina, Anthony P Baldo, et al.JCI Insight|October 26, 2021
Computational and biophysical determination of pathogenicity of variants of unknown significance in cardiac thin filamentAllison B Mason, Melissa L Lynn, Anthony P Baldo, et al.ACS Omega|July 26, 2019
Proof of Principle that Molecular Modeling Followed by a Biophysical Experiment Can Develop Small Molecules that Restore Function to the Cardiac Thin Filament in the Presence of Cardiomyopathic MutationsLukasz Szatkowski, Melissa L Lynn, Teryn Holeman, et al.The Journal of Biological Chemistry|August 8, 2019
FRET-based analysis of the cardiac troponin T linker region reveals the structural basis of the hypertrophic cardiomyopathy-causing Δ160E mutationSalwa Abdullah, Melissa L Lynn, Mark T McConnell, et al.Circulation Research|September 27, 2024
Arg92Leu-cTnT Alters the cTnC-cTnI Interface Disrupting PKA-Mediated RelaxationMelissa L Lynn, Jesus Jimenez, Romi L Castillo, et al.Pageof 1