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Weikang Ma

Showing results (61-70 of 79) with videos related to

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Proceedings of the National Academy of Sciences of the United States of America|May 22, 2019
Cardiac myosin activation with 2-deoxy-ATP via increased electrostatic interactions with actinJoseph D Powers, Chen-Ching Yuan, Kimberly J McCabe, et al.
Circulation Research|February 16, 2022
GSK-3β Localizes to the Cardiac Z-Disc to Maintain Length Dependent ActivationMarisa J Stachowski-Doll, Maria Papadaki, Thomas G Martin, et al.
Circulation|May 17, 2023
Right Ventricular Sarcomere Contractile Depression and the Role of Thick Filament Activation in Human Heart Failure With Pulmonary HypertensionVivek Jani, M Imran Aslam, Axel J Fenwick, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 15, 2018
Deciphering the super relaxed state of human β-cardiac myosin and the mode of action of mavacamten from myosin molecules to muscle fibersRobert L Anderson, Darshan V Trivedi, Saswata S Sarkar, et al.
Biorxiv : the Preprint Server for Biology|June 4, 2025
Myosin modulator Aficamten inhibits force in cardiac muscle by altering myosin's biochemical activity without changing thick filament structureSaffie Mohran, Kristina B Kooiker, Ateeqa Naim, et al.
JACC. Basic to Translational Science|December 20, 2025
Myosin Modulator Aficamten Inhibits Force by Altering Myosin's Biochemical Activity Without Changing Thick Filament StructureSaffie Mohran, Kristina B Kooiker, Ateeqa Naim, et al.
Journal of Molecular and Cellular Cardiology|October 30, 2025
Molecular mechanisms of altered contraction with the β-myosin R403Q mutation in porcine ventricular muscle and a human stem cell-derived cardiomyocyte modelSonette Steczina, Saffie Mohran, Matthew C Childers, et al.
Biorxiv : the Preprint Server for Biology|September 15, 2025
Molecular mechanisms of altered contraction with the β-myosin R403Q mutation in porcine ventricular muscle and a human stem cell-derived cardiomyocyte modelSonette Steczina, Saffie Mohran, Matthew C Childers, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 30, 2023
Cardiac troponin T N-domain variant destabilizes the actin interface resulting in disturbed myofilament functionMaicon Landim-Vieira, Weikang Ma, Taejeong Song, et al.
International Journal of Molecular Sciences|October 14, 2023
Disruption of Z-Disc Function Promotes Mechanical Dysfunction in Human Myocardium: Evidence for a Dual Myofilament Modulatory Role by Alpha-Actinin 2Michelle Rodriguez Garcia, Jeffrey Schmeckpeper, Maicon Landim-Vieira, et al.
Pageof 8

Showing results (61-70 of 79) with videos related to

Sort By:
Pageof 8
Proceedings of the National Academy of Sciences of the United States of America|May 22, 2019
Cardiac myosin activation with 2-deoxy-ATP via increased electrostatic interactions with actinJoseph D Powers, Chen-Ching Yuan, Kimberly J McCabe, et al.
Circulation Research|February 16, 2022
GSK-3β Localizes to the Cardiac Z-Disc to Maintain Length Dependent ActivationMarisa J Stachowski-Doll, Maria Papadaki, Thomas G Martin, et al.
Circulation|May 17, 2023
Right Ventricular Sarcomere Contractile Depression and the Role of Thick Filament Activation in Human Heart Failure With Pulmonary HypertensionVivek Jani, M Imran Aslam, Axel J Fenwick, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 15, 2018
Deciphering the super relaxed state of human β-cardiac myosin and the mode of action of mavacamten from myosin molecules to muscle fibersRobert L Anderson, Darshan V Trivedi, Saswata S Sarkar, et al.
Biorxiv : the Preprint Server for Biology|June 4, 2025
Myosin modulator Aficamten inhibits force in cardiac muscle by altering myosin's biochemical activity without changing thick filament structureSaffie Mohran, Kristina B Kooiker, Ateeqa Naim, et al.
JACC. Basic to Translational Science|December 20, 2025
Myosin Modulator Aficamten Inhibits Force by Altering Myosin's Biochemical Activity Without Changing Thick Filament StructureSaffie Mohran, Kristina B Kooiker, Ateeqa Naim, et al.
Journal of Molecular and Cellular Cardiology|October 30, 2025
Molecular mechanisms of altered contraction with the β-myosin R403Q mutation in porcine ventricular muscle and a human stem cell-derived cardiomyocyte modelSonette Steczina, Saffie Mohran, Matthew C Childers, et al.
Biorxiv : the Preprint Server for Biology|September 15, 2025
Molecular mechanisms of altered contraction with the β-myosin R403Q mutation in porcine ventricular muscle and a human stem cell-derived cardiomyocyte modelSonette Steczina, Saffie Mohran, Matthew C Childers, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 30, 2023
Cardiac troponin T N-domain variant destabilizes the actin interface resulting in disturbed myofilament functionMaicon Landim-Vieira, Weikang Ma, Taejeong Song, et al.
International Journal of Molecular Sciences|October 14, 2023
Disruption of Z-Disc Function Promotes Mechanical Dysfunction in Human Myocardium: Evidence for a Dual Myofilament Modulatory Role by Alpha-Actinin 2Michelle Rodriguez Garcia, Jeffrey Schmeckpeper, Maicon Landim-Vieira, et al.
Pageof 8