CREB

IGF-1 protects cardiac myocytes from hyperosmotic stress-induced apoptosis via CREB

Transcription Factors / Apoptosis / Signal Transduction / DNA / Insulin / Animals / Hormones / Osmotic pressure / Calcium Signaling / Phosphorylation / CREB / Nucleic Acids / Proteins / Stimuli / Transcription Factor / Translocation / Chemical Reactions / Cell nucleus / AMP / Rats / Calmodulin / DNA binding / Calcineurin / Peptide hormones / Osmotic Stress / Ions / Calcium Ions / Protein Transport / Biochemistry and cell biology / Insulin Like Growth Factor / Animals / Hormones / Osmotic pressure / Calcium Signaling / Phosphorylation / CREB / Nucleic Acids / Proteins / Stimuli / Transcription Factor / Translocation / Chemical Reactions / Cell nucleus / AMP / Rats / Calmodulin / DNA binding / Calcineurin / Peptide hormones / Osmotic Stress / Ions / Calcium Ions / Protein Transport / Biochemistry and cell biology / Insulin Like Growth Factor

IGF-1 protects cardiac myocytes from hyperosmotic stress-induced apoptosis via CREB

Transcription Factors / Apoptosis / Signal Transduction / DNA / Insulin / Animals / Hormones / Osmotic pressure / Calcium Signaling / Phosphorylation / CREB / Nucleic Acids / Proteins / Stimuli / Transcription Factor / Translocation / Chemical Reactions / Cell nucleus / AMP / Rats / Calmodulin / DNA binding / Calcineurin / Peptide hormones / Osmotic Stress / Ions / Calcium Ions / Protein Transport / Biochemistry and cell biology / Insulin Like Growth Factor / Animals / Hormones / Osmotic pressure / Calcium Signaling / Phosphorylation / CREB / Nucleic Acids / Proteins / Stimuli / Transcription Factor / Translocation / Chemical Reactions / Cell nucleus / AMP / Rats / Calmodulin / DNA binding / Calcineurin / Peptide hormones / Osmotic Stress / Ions / Calcium Ions / Protein Transport / Biochemistry and cell biology / Insulin Like Growth Factor
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