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Myosin heavy chain expression and atrophy in rat skeletal muscle during transition from cardiac hypertrophy to heart failure
(Blackwell Publishing, 2003-08-01)
The purpose of this investigation was to determine whether changes in myosin heavy chain (MHC) expression and atrophy in rat skeletal muscle are observed during transition from cardiac hypertrophy to chronic heart failure ...
Myosin heavy chain expression and atrophy in rat skeletal muscle during transition from cardiac hypertrophy to heart failure
(Blackwell Publishing, 2003-08-01)
The purpose of this investigation was to determine whether changes in myosin heavy chain (MHC) expression and atrophy in rat skeletal muscle are observed during transition from cardiac hypertrophy to chronic heart failure ...
A novel myosin heavy chain gene in human chromosome 19q13.3
(Gene: 312 p. 165-171, 2003-07)
A human myosin heavy chain gene was identified in chromosome 19q13 by computational sequence analysis, RT-PCR and DNA
sequencing of the cDNA. The complete cDNA has a length of 6786 bp and comprises 41 exons (40 coding) ...
A novel myosin heavy chain gene in human chromosome 19q13.3
(Gene: 312 p. 165-171, 2003-07)
A human myosin heavy chain gene was identified in chromosome 19q13 by computational sequence analysis, RT-PCR and DNA
sequencing of the cDNA. The complete cDNA has a length of 6786 bp and comprises 41 exons (40 coding) ...
Immunolocalization of myosin Va in the developing nervous system of embryonic chicks
(Springer, 2004-08-01)
Myosins are molecular motors associated with the actin cytoskeleton that participate in the mechanisms of cellular motility. During the development of the nervous system, migration of nerve cells to specific sites, extension ...
MiRNA-208a and miRNA-208b are triggered in thyroid hormone-induced cardiac hypertrophy - role of type 1 Angiotensin II receptor (AT1R) on miRNA-208a/α-MHC modulation
(North Holland PublishingLimerick, 2013-06-15)
Hyperthyroidism promotes cardiac hypertrophy and the Angiotensin type 1 receptor (AT1R) has been demonstrated to mediate part of this response. Recent studies have uncovered a potentially important role for the microRNAs ...
Myosin heavy chain changes in heart failure-rat diaphragm muscle are not related to myogenic regulatory factors expression
(Federation Amer Soc Exp Biol, 2011-04-01)
Heart failure-induced myosin heavy chain changes in rat diaphragm muscle are not related to gene expression of myogenic regulatory factors
(Oxford University Press, 2010-09-01)