Martin F. Schneider

Affiliations: 
Biochemistry and Molecular Biology University of Maryland School of Medicine, Baltimore, MD, United States 
Area:
E-C coupling in muscle and Ca2+ signals in sympathetic neurons
Google:
"Martin Schneider"
Bio:

I received a BS in Biochemistry from Yale, completed 2 years of Medical School at Tufts, spent 1 year as a special student in Biophysics and Physiology at University College, London and completed my PhD in Physiology at Duke. After postdoctoral training in Physiology at Yale Medical School, I was a faculty member in the Department of Physiology at the University of Rochester School of Medicine (including a year's sabbatical at the Neurobiology Laboratory, Ecole Normale Superieure, Paris, France) before joining the Biochemistry Department at the School of Medicine.

Mean distance: 15.51 (cluster 11)
 
SNBCP
Cross-listing: Chemistry Tree

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Publications

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Bibollet H, Bennett DF, Schneider MF, et al. (2023) Functional Site-Directed Fluorometry in Native Cells to Study Skeletal Muscle Excitability. Journal of Visualized Experiments : Jove
Bibollet H, Nguyen EL, Miranda DR, et al. (2023) Voltage sensor current, SR Ca release, and Ca channel current during trains of action potential-like depolarizations of skeletal muscle fibers. Physiological Reports. 11: e15675
Velasquez FC, Román B, Hernández-Ochoa EO, et al. (2023) Contribution of skeletal muscle-specific microRNA-133b to insulin resistance in heart failure. American Journal of Physiology. Heart and Circulatory Physiology
Morgenstern TJ, Nirwan N, Hernández-Ochoa EO, et al. (2022) Selective posttranslational inhibition of Caβ-associated voltage-dependent calcium channels with a functionalized nanobody. Nature Communications. 13: 7556
Banks Q, Bibollet H, Contreras M, et al. (2022) Voltage sensor movements of CaV1.1 during an action potential in skeletal muscle fibers. The Journal of General Physiology. 154
Banks Q, Bibollet H, Contreras M, et al. (2021) Voltage sensor movements of Ca1.1 during an action potential in skeletal muscle fibers. Proceedings of the National Academy of Sciences of the United States of America. 118
Wang Q, Hernández-Ochoa EO, Viswanathan MC, et al. (2021) CaMKII oxidation is a critical performance/disease trade-off acquired at the dawn of vertebrate evolution. Nature Communications. 12: 3175
Cserne Szappanos H, Vincze J, Bodnár D, et al. (2020) High Time Resolution Analysis of Voltage-Dependent and Voltage-Independent Calcium Sparks in Frog Skeletal Muscle Fibers. Frontiers in Physiology. 11: 599822
Pratt SJP, Lee RM, Chang KT, et al. (2020) Mechanoactivation of NOX2-generated ROS elicits persistent TRPM8 Ca signals that are inhibited by oncogenic KRas. Proceedings of the National Academy of Sciences of the United States of America
Russell SJ, Schneider MF. (2020) Alternative signaling pathways from IGF1 or Insulin to Akt activation and Foxo1 nuclear efflux in adult skeletal muscle fibers. The Journal of Biological Chemistry
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