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Benjamin L Prosser
Benjamin L Prosser
Associate Professor of Physiology, University of Pennsylvania Perelman School of Medicine
Verified email at pennmedicine.upenn.edu - Homepage
Title
Cited by
Cited by
Year
X-ROS signaling: rapid mechano-chemo transduction in heart
BL Prosser, CW Ward, WJ Lederer
Science 333 (6048), 1440-1445, 2011
5802011
Detyrosinated microtubules buckle and bear load in contracting cardiomyocytes
P Robison, MA Caporizzo, H Ahmadzadeh, AI Bogush, CY Chen, ...
Science 352 (6284), aaf0659, 2016
2972016
Microtubules underlie dysfunction in duchenne muscular dystrophy
RJ Khairallah, G Shi, F Sbrana, BL Prosser, C Borroto, MJ Mazaitis, ...
Science signaling 5 (236), ra56-ra56, 2012
2842012
Mechanosensing by the lamina protects against nuclear rupture, DNA damage, and cell-cycle arrest
S Cho, M Vashisth, A Abbas, S Majkut, K Vogel, Y Xia, IL Ivanovska, ...
Developmental cell 49 (6), 920-935. e5, 2019
2422019
Suppression of detyrosinated microtubules improves cardiomyocyte function in human heart failure
CY Chen, MA Caporizzo, K Bedi, A Vite, AI Bogush, P Robison, JG Heffler, ...
Nature medicine 24 (8), 1225-1233, 2018
2222018
Detyrosinated microtubules modulate mechanotransduction in heart and skeletal muscle
JP Kerr, P Robison, G Shi, AI Bogush, AM Kempema, JK Hexum, ...
Nature communications 6 (1), 8526, 2015
2072015
X-ROS signaling in the heart and skeletal muscle: Stretch-dependent local ROS regulates [Ca2+] i
BL Prosser, RJ Khairallah, AP Ziman, CW Ward, WJ Lederer
Journal of molecular and cellular cardiology 58, 172-181, 2013
1522013
S100A1 and calmodulin compete for the same binding site on ryanodine receptor
NT Wright, BL Prosser, KM Varney, DB Zimmer, MF Schneider, DJ Weber
Journal of Biological Chemistry 283 (39), 26676-26683, 2008
1382008
S100A1 binds to the calmodulin-binding site of ryanodine receptor and modulates skeletal muscle excitation-contraction coupling
BL Prosser, NT Wright, EO Hernandez-Ochoa, KM Varney, Y Liu, ...
Journal of Biological Chemistry 283 (8), 5046-5057, 2008
1252008
Cardiac microtubules in health and heart disease
MA Caporizzo, CY Chen, BL Prosser
Experimental Biology and Medicine 244 (15), 1255-1272, 2019
1022019
Mechanical stretch-induced activation of ROS/RNS signaling in striated muscle
CW Ward, BL Prosser, WJ Lederer
Antioxidants & redox signaling 20 (6), 929-936, 2014
1012014
MIRO-1 determines mitochondrial shape transition upon GPCR activation and Ca2+ stress
N Nemani, E Carvalho, D Tomar, Z Dong, A Ketschek, SL Breves, F Jaņa, ...
Cell reports 23 (4), 1005-1019, 2018
942018
Contractile function during angiotensin-II activation: increased Nox2 activity modulates cardiac calcium handling via phospholamban phosphorylation
M Zhang, BL Prosser, MA Bamboye, ANS Gondim, CX Santos, D Martin, ...
Journal of the American College of Cardiology 66 (3), 261-272, 2015
942015
A balance between intermediate filaments and microtubules maintains nuclear architecture in the cardiomyocyte
J Heffler, PP Shah, P Robison, S Phyo, K Veliz, K Uchida, A Bogush, ...
Circulation research 126 (3), e10-e26, 2020
922020
Myosin-binding protein C corrects an intrinsic inhomogeneity in cardiac excitation-contraction coupling
MJ Previs, BL Prosser, JY Mun, SB Previs, J Gulick, K Lee, J Robbins, ...
Science advances 1 (1), e1400205, 2015
832015
Microtubules increase diastolic stiffness in failing human cardiomyocytes and myocardium
MA Caporizzo, CY Chen, K Bedi, KB Margulies, BL Prosser
Circulation 141 (11), 902-915, 2020
792020
Pathogenic LMNA variants disrupt cardiac lamina-chromatin interactions and de-repress alternative fate genes
PP Shah, W Lv, JH Rhoades, A Poleshko, D Abbey, MA Caporizzo, ...
Cell Stem Cell 28 (5), 938-954. e9, 2021
732021
X-ROS signalling is enhanced and graded by cyclic cardiomyocyte stretch
BL Prosser, CW Ward, WJ Lederer
Cardiovascular research 98 (2), 307-314, 2013
722013
Microtubules orchestrate local translation to enable cardiac growth
EA Scarborough, K Uchida, M Vogel, N Erlitzki, M Iyer, SA Phyo, ...
Nature communications 12 (1), 1547, 2021
702021
Physiology, structure, and susceptibility to injury of skeletal muscle in mice lacking keratin 19-based and desmin-based intermediate filaments
RM Lovering, A O'Neill, JM Muriel, BL Prosser, J Strong, RJ Bloch
American Journal of Physiology-Cell Physiology 300 (4), C803-C813, 2011
642011
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