Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, are essential for cardiac physiology and defects in these protective mechanisms can result in pathological alterations. Bcl2-associated athanogene 3 (BAG3) is expressed in cardiomyocytes and is a component of the chaperone-assisted autophagy pathway, essential for homeostasis of mechanically altered cells. BAG3 ablation in mice results in a lethal cardiomyopathy soon after birth and mutations of this gene have been associated with different cardiomyopathies including stress-induced Takotsubo cardiomyopathy (TTC). The pathogenic mechanism leading to TTC has not been defined, but it has been suggested that the heart can be damaged by excessive ...
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A new familial dilated cardiomyopathy (FDCM) was found related to mutations in BAG3 gene. MicroRNAs ...
Bcl2-associated athanogene 3 (BAG3) is a multifunctional cochaperone responsible for protein quality...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular chaperones regulate quality control in the human proteome, pathways that have been implica...
Molecular chaperones regulate quality control in the human proteome, pathways that have been implica...
The molecular co-chaperone Bcl2-associated athanogene 3 (Bag3) is a critical component of protein qu...
Cardiomyocytes are under constant mechanical and metabolic stress, which makes functional protein qu...
Cardiomyocytes are under constant mechanical and metabolic stress, which makes functional protein qu...
Supplemental Data Supplemental Table S1 Download Supplemental Table S2 Download Supplemental Table S...
A new familial dilated cardiomyopathy (FDCM) was found related to mutations in BAG3 gene. MicroRNAs ...
Bcl2-associated athanogene 3 (BAG3) is a multifunctional cochaperone responsible for protein quality...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular mechanisms protecting cardiomyocytes from stress-induced death, including tension stress, ...
Molecular chaperones regulate quality control in the human proteome, pathways that have been implica...
Molecular chaperones regulate quality control in the human proteome, pathways that have been implica...
The molecular co-chaperone Bcl2-associated athanogene 3 (Bag3) is a critical component of protein qu...
Cardiomyocytes are under constant mechanical and metabolic stress, which makes functional protein qu...
Cardiomyocytes are under constant mechanical and metabolic stress, which makes functional protein qu...
Supplemental Data Supplemental Table S1 Download Supplemental Table S2 Download Supplemental Table S...
A new familial dilated cardiomyopathy (FDCM) was found related to mutations in BAG3 gene. MicroRNAs ...
Bcl2-associated athanogene 3 (BAG3) is a multifunctional cochaperone responsible for protein quality...