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Trends in Molecular Medicine
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May 7, 2008
Taking microRNAs to heart
Thomas E Callis, Da-Zhi Wang
Circulation Research
|
October 15, 2005
Bone morphogenetic protein signaling modulates myocardin transactivation of cardiac genes
Thomas E Callis, Dongsun Cao, Da-Zhi Wang
Journal of Cell Science
|
December 19, 2008
microRNAs and muscle disorders
Jian-Fu Chen, Thomas E Callis, Da-Zhi Wang
DNA and Cell Biology
|
May 1, 2007
MicroRNAs in skeletal and cardiac muscle development
Thomas E Callis, Jian-Fu Chen, Da-Zhi Wang
The International Journal of Biochemistry & Cell Biology
|
July 13, 2010
MicroRNAs 1, 133, and 206: critical factors of skeletal and cardiac muscle development, function, and disease
W H Davin Townley-Tilson, Thomas E Callis, DaZhi Wang
Experimental Biology and Medicine (Maywood, N.J.)
|
January 29, 2008
Muscling through the microRNA world
Thomas E Callis, Zhongliang Deng, Jian-Fu Chen, et al.
Expert Review of Molecular Diagnostics
|
April 8, 2010
Evolving molecular diagnostics for familial cardiomyopathies: at the heart of it all
Thomas E Callis, Brian C Jensen, Karen E Weck, et al.
The Journal of Biological Chemistry
|
August 27, 2011
miR-155 inhibits expression of the MEF2A protein to repress skeletal muscle differentiation
Hee Young Seok, Mariko Tatsuguchi, Thomas E Callis, et al.
Journal of Cardiovascular Translational Research
|
February 11, 2014
Distinguishing hypertrophic cardiomyopathy-associated mutations from background genetic noise
Jamie D Kapplinger, Andrew P Landstrom, J Martijn Bos, et al.
Circulation. Genomic and Precision Medicine
|
February 1, 2021
Common Variants in <i>KCNE1, KCNH2</i>, and <i>SCN5A</i> May Impact Cardiac Arrhythmia Risk
Matteo Vatta, Rebecca Truty, John Garcia, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 25) with videos related to
Sort By:
Page
of 3
Trends in Molecular Medicine
|
May 7, 2008
Taking microRNAs to heart
Thomas E Callis, Da-Zhi Wang
Circulation Research
|
October 15, 2005
Bone morphogenetic protein signaling modulates myocardin transactivation of cardiac genes
Thomas E Callis, Dongsun Cao, Da-Zhi Wang
Journal of Cell Science
|
December 19, 2008
microRNAs and muscle disorders
Jian-Fu Chen, Thomas E Callis, Da-Zhi Wang
DNA and Cell Biology
|
May 1, 2007
MicroRNAs in skeletal and cardiac muscle development
Thomas E Callis, Jian-Fu Chen, Da-Zhi Wang
The International Journal of Biochemistry & Cell Biology
|
July 13, 2010
MicroRNAs 1, 133, and 206: critical factors of skeletal and cardiac muscle development, function, and disease
W H Davin Townley-Tilson, Thomas E Callis, DaZhi Wang
Experimental Biology and Medicine (Maywood, N.J.)
|
January 29, 2008
Muscling through the microRNA world
Thomas E Callis, Zhongliang Deng, Jian-Fu Chen, et al.
Expert Review of Molecular Diagnostics
|
April 8, 2010
Evolving molecular diagnostics for familial cardiomyopathies: at the heart of it all
Thomas E Callis, Brian C Jensen, Karen E Weck, et al.
The Journal of Biological Chemistry
|
August 27, 2011
miR-155 inhibits expression of the MEF2A protein to repress skeletal muscle differentiation
Hee Young Seok, Mariko Tatsuguchi, Thomas E Callis, et al.
Journal of Cardiovascular Translational Research
|
February 11, 2014
Distinguishing hypertrophic cardiomyopathy-associated mutations from background genetic noise
Jamie D Kapplinger, Andrew P Landstrom, J Martijn Bos, et al.
Circulation. Genomic and Precision Medicine
|
February 1, 2021
Common Variants in <i>KCNE1, KCNH2</i>, and <i>SCN5A</i> May Impact Cardiac Arrhythmia Risk
Matteo Vatta, Rebecca Truty, John Garcia, et al.
Page
of 3