Search Results - "Robison, Patrick"

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    Detyrosinated microtubules buckle and bear load in contracting cardiomyocytes by Robison, Patrick, Caporizzo, Matthew A., Ahmadzadeh, Hossein, Bogush, Alexey I., Chen, Christina Yingxian, Margulies, Kenneth B., Shenoy, Vivek B., Prosser, Benjamin L.

    “…The microtubule (MT) cytoskeleton can transmit mechanical signals and resist compression in contracting cardiomyocytes. How MTs perform these roles remains…”
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    A Balance Between Intermediate Filaments and Microtubules Maintains Nuclear Architecture in the Cardiomyocyte by Heffler, Julie, Shah, Parisha P., Robison, Patrick, Phyo, Sai, Veliz, Kimberly, Uchida, Keita, Bogush, Alexey, Rhoades, Joshua, Jain, Rajan, Prosser, Benjamin L.

    Published in Circulation research (31-01-2020)
    “…Mechanical forces are transduced to nuclear responses via the linkers of the nucleoskeleton and cytoskeleton (LINC) complex, which couples the cytoskeleton to…”
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    Detyrosinated microtubules modulate mechanotransduction in heart and skeletal muscle by Kerr, Jaclyn P., Robison, Patrick, Shi, Guoli, Bogush, Alexey I., Kempema, Aaron M., Hexum, Joseph K., Becerra, Natalia, Harki, Daniel A., Martin, Stuart S., Raiteri, Roberto, Prosser, Benjamin L., Ward, Christopher W.

    Published in Nature communications (08-10-2015)
    “…In striated muscle, X-ROS is the mechanotransduction pathway by which mechanical stress transduced by the microtubule network elicits reactive oxygen species…”
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    Impaired calcium signaling in muscle fibers from intercostal and foot skeletal muscle in a cigarette smoke‐induced mouse model of COPD by Robison, Patrick, Sussan, Thomas E., Chen, Hegang, Biswal, Shyam, Schneider, Martin F., Hernández‐Ochoa, Erick O.

    Published in Muscle & nerve (01-08-2017)
    “…ABSTRACT Introduction Respiratory and locomotor skeletal muscle dysfunction are common findings in chronic obstructive pulmonary disease (COPD); however, the…”
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    Microtubule mechanics in the working myocyte by Robison, Patrick, Prosser, Benjamin L.

    Published in The Journal of physiology (15-06-2017)
    “…The mechanical role of cardiac microtubules (MTs) has been a topic of some controversy. Early studies, which relied largely on pharmacological interventions…”
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    Desmin intermediate filaments and tubulin detyrosination stabilize growing microtubules in the cardiomyocyte by Salomon, Alexander K., Phyo, Sai Aung, Okami, Naima, Heffler, Julie, Robison, Patrick, Bogush, Alexey I., Prosser, Benjamin L.

    Published in Basic research in cardiology (01-12-2022)
    “…In heart failure, an increased abundance of post-translationally detyrosinated microtubules stiffens the cardiomyocyte and impedes its contractile function…”
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    Abstract 519: Desmin Protects Cardiomyocyte Nuclei From Microtubule-dependent Collapse by Heffler, Julie, Shah, Parisha P, Robison, Patrick, Phyo, Sai, Veliz, Kimberly, Bogush, Alexey, Rhoades, Joshua, Jain, Rajan, Prosser, Benjamin L

    Published in Circulation research (02-08-2019)
    “…Abstract only Alterations to mechanical forces have been long-appreciated to be sufficient to drive cardiac pathophysiological remodeling; however, the…”
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    Mechanical signaling coordinates the embryonic heartbeat by Chiou, Kevin K., Rocks, Jason W., Chen, Christina Yingxian, Cho, Sangkyun, Merkus, Koen E., Rajaratnam, Anjali, Robison, Patrick, Tewari, Manorama, Vogel, Kenneth, Majkut, Stephanie F., Prosser, Benjamin L., Discher, Dennis E., Liu, Andrea J.

    “…In the beating heart, cardiac myocytes (CMs) contract in a coordinated fashion, generating contractile wave fronts that propagate through the heart with each…”
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    Abstract 13: Suppressing Microtubule Detyrosination Reduces Stiffness and Improves Contractility in Human Cardiomyocytes by Prosser, Benjamin L, Bedi, Kenneth, Caporizzo, Matthew, Chen, Christina, Robison, Patrick, Margulies, Kenneth

    Published in Circulation research (21-07-2017)
    “…Abstract only The microtubule contribution to myocyte mechanics has been a controversial topic over the years. Utilizing high-speed, super-resolution imaging,…”
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    Atypical NFATc1 Regulation in Cultured Murine Intercostal Muscles by Robison, Patrick, Hernández‐Ochoa, Erick, Schneider, Martin F.

    Published in The FASEB journal (01-04-2013)
    “…Abstract only The transcription factor NFATc1 controls the transformation of skeletal muscle fibers from fast to slow type in response to muscle activity. In…”
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