نتائج البحث - David E. Arnolds
- يعرض 1 - 4 نتائج من 4
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1
Distinct Signals Regulate AS160 Phosphorylation in Response to Insulin, AICAR, and Contraction in Mouse Skeletal Muscle حسب Henning F. Kramer, Carol A. Witczak, Nobuharu Fujii, Niels Jessen, Eric B. Taylor, David E. Arnolds, Kei Sakamoto, Michael F. Hirshman, Laurie J. Goodyear
منشور في 2006Artigo -
2
TBX5 drives Scn5a expression to regulate cardiac conduction system function حسب David E. Arnolds, Fang Liu, John Fahrenbach, Gene Kim, Kurt J. Schillinger, Scott Smemo, Elizabeth M. McNally, Marcelo A. Nóbrega, Vickas V. Patel, Ivan P. Moskowitz
منشور في 2012Artigo -
3
Skeletal Muscle-Selective Knockout of LKB1 Increases Insulin Sensitivity, Improves Glucose Homeostasis, and Decreases TRB3 حسب Ho-Jin Koh, David E. Arnolds, Nobuharu Fujii, Thien T. Tran, Marc J. Rogers, Niels Jessen, Yangfeng Li, Chong Wee Liew, Richard C. Ho, Michael F. Hirshman, Rohit Kulkarni, C. Ronald Kahn, Laurie J. Goodyear
منشور في 2006Artigo -
4
A common genetic variant within SCN10A modulates cardiac SCN5A expression حسب Malou van den Boogaard, Scott Smemo, Ozanna Burnicka-Turek, David E. Arnolds, Harmen J.G. van de Werken, Petra Klous, David McKean, Jochen D. Muehlschlegel, Julia Moosmann, Okan Toka, Xinan Yang, Tamara T. Koopmann, Michiel Adriaens, Connie R. Bezzina, Wouter de Laat, Christine E. Seidman, J.G. Seidman, Vincent M. Christoffels, Marcelo A. Nóbrega, Phil Barnett, Ivan P. Moskowitz
منشور في 2014Artigo
أدوات البحث:
موضوعات ذات صلة
Biology
Cell biology
Endocrinology
Internal medicine
Medicine
Brugada syndrome
Enhancer
Gene
Genetics
Insulin
Neuroscience
Phosphorylation
Skeletal muscle
AMPK
Bioinformatics
Carbohydrate metabolism
Channelopathy
Chemistry
Computational biology
Contraction (grammar)
Electrical conduction system of the heart
Electrocardiography
Function (biology)
Gene expression
Genome-wide association study
Genotype
Glucose clamp technique
Glucose homeostasis
Glucose transporter
Glucose uptake