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Siegfried Labeit

Showing results (81-90 of 157) with videos related to

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Journal of Molecular Biology|May 6, 2003
The complete mouse nebulin gene sequence and the identification of cardiac nebulinSteven T Kazmierski, Parker B Antin, Christian C Witt, et al.
Biophysical Journal|October 22, 2009
Tuning passive mechanics through differential splicing of titin during skeletal muscle developmentCoen A C Ottenheijm, Anna M Knottnerus, Danielle Buck, et al.
International Journal of Molecular Sciences|February 25, 2023
Small-Molecule Inhibition of MuRF1 Prevents Early Disuse-Induced Diaphragmatic Dysfunction and AtrophyFernando Ribeiro, Paula K N Alves, Luiz R G Bechara, et al.
Muscle & Nerve|April 4, 2025
Leucine Supplementation Counteracts the Atrophic Effects of HDAC4 in Rat Skeletal Muscle Submitted to Hindlimb ImmobilizationPaula K N Alves, André Cruz, William J Silva, et al.
Advances in Experimental Medicine and Biology|January 13, 2022
Molecular Mechanisms behind Persistent Presence of Parvovirus B19 in Human Dilated MyocardiumDaiva Bironaitė, Ieva Kažukauskienė, Julius Bogomolovas, et al.
Journal of Molecular Biology|May 13, 2008
MuRF1-dependent regulation of systemic carbohydrate metabolism as revealed from transgenic mouse studiesStephanie Hirner, Christian Krohne, Alexander Schuster, et al.
DNA and Cell Biology|November 2, 2020
Skeletal Muscle Anti-Atrophic Effects of Leucine Involve Myostatin InhibitionAndré Cruz, Andrea Ferian, Paula K N Alves, et al.
Journal of Molecular Medicine (Berlin, Germany)|May 31, 2006
Identification of a novel frameshift mutation in the giant muscle filament titin in a large Australian family with dilated cardiomyopathyBrenda Gerull, John Atherton, Anke Geupel, et al.
Journal of Child Neurology|April 10, 2004
Actin-related myopathy without any missense mutation in the ACTA1 geneHans H Goebel, Knut Brockmann, Carsten G Bönnemann, et al.
Biophysical Journal|December 20, 2015
Phosphorylating Titin's Cardiac N2B Element by ERK2 or CaMKIIδ Lowers the Single Molecule and Cardiac Muscle ForceJohn Perkin, Rebecca Slater, Giorgia Del Favero, et al.
Pageof 16

Showing results (81-90 of 157) with videos related to

Sort By:
Pageof 16
Journal of Molecular Biology|May 6, 2003
The complete mouse nebulin gene sequence and the identification of cardiac nebulinSteven T Kazmierski, Parker B Antin, Christian C Witt, et al.
Biophysical Journal|October 22, 2009
Tuning passive mechanics through differential splicing of titin during skeletal muscle developmentCoen A C Ottenheijm, Anna M Knottnerus, Danielle Buck, et al.
International Journal of Molecular Sciences|February 25, 2023
Small-Molecule Inhibition of MuRF1 Prevents Early Disuse-Induced Diaphragmatic Dysfunction and AtrophyFernando Ribeiro, Paula K N Alves, Luiz R G Bechara, et al.
Muscle & Nerve|April 4, 2025
Leucine Supplementation Counteracts the Atrophic Effects of HDAC4 in Rat Skeletal Muscle Submitted to Hindlimb ImmobilizationPaula K N Alves, André Cruz, William J Silva, et al.
Advances in Experimental Medicine and Biology|January 13, 2022
Molecular Mechanisms behind Persistent Presence of Parvovirus B19 in Human Dilated MyocardiumDaiva Bironaitė, Ieva Kažukauskienė, Julius Bogomolovas, et al.
Journal of Molecular Biology|May 13, 2008
MuRF1-dependent regulation of systemic carbohydrate metabolism as revealed from transgenic mouse studiesStephanie Hirner, Christian Krohne, Alexander Schuster, et al.
DNA and Cell Biology|November 2, 2020
Skeletal Muscle Anti-Atrophic Effects of Leucine Involve Myostatin InhibitionAndré Cruz, Andrea Ferian, Paula K N Alves, et al.
Journal of Molecular Medicine (Berlin, Germany)|May 31, 2006
Identification of a novel frameshift mutation in the giant muscle filament titin in a large Australian family with dilated cardiomyopathyBrenda Gerull, John Atherton, Anke Geupel, et al.
Journal of Child Neurology|April 10, 2004
Actin-related myopathy without any missense mutation in the ACTA1 geneHans H Goebel, Knut Brockmann, Carsten G Bönnemann, et al.
Biophysical Journal|December 20, 2015
Phosphorylating Titin's Cardiac N2B Element by ERK2 or CaMKIIδ Lowers the Single Molecule and Cardiac Muscle ForceJohn Perkin, Rebecca Slater, Giorgia Del Favero, et al.
Pageof 16