BackgroundLong chain acyl‐CoA synthetases (ACSL) catalyze long‐chain fatty acids (FA) conversion to acyl‐CoAs. Temporal ACSL1 inactivation in mouse hearts (Acsl1H−/−) impaired FA oxidation and dramatically increased glucose uptake, glucose oxidation, and mTOR activation, resulting in cardiac hypertrophy. We used unbiased metabolomics and gene expression analyses to elucidate the cardiac cellular response to increased glucose use in a genetic model of inactivated FA oxidation.Methods and ResultsMetabolomics analysis identified 60 metabolites altered in Acsl1H−/− hearts, including 6 related to glucose metabolism and 11 to cysteine and glutathione pathways. Concurrently, global cardiac transcriptional analysis revealed differential expression ...
Includes bibliographical references (leaves 130-173).Metabolic remodeling is thought to be an import...
Diabetic cardiomyopathy is a secondary complication of diabetes with an unclear etiology. Based on a...
Preferential and specific down-regulation of genes involved in fatty acid (FA) uptake and metabolism...
BackgroundLong chain acyl‐CoA synthetases (ACSL) catalyze long‐chain fatty acids (FA) conversion to ...
Background--Long-chain acyl-CoA synthetases (ACSL) catalyze the conversion of long-chain fatty acids...
In mice with temporally-induced cardiac-specific deficiency of acyl-CoA synthetase-1 (Acsl1H−/−), th...
In mice with temporally-induced cardiac-specific deficiency of acyl-CoA synthetase-1 (Acsl1H−/−), th...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Both during normal physiological development as well as in the face of cardiac stress, the heart exh...
Cardiovascular disease is the number one cause of death worldwide. In the heart, mitochondria provid...
Cardiovascular disease is the number one cause of death worldwide. In the heart, mitochondria provid...
Although enhanced cGMP signaling can prevent hypertrophy, mechanisms underlying this cardioprotectiv...
Background: During pressure overload-induced hypertrophy, unloading-induced atrophy, and diabetes me...
Includes bibliographical references (leaves 130-173).Metabolic remodeling is thought to be an import...
Diabetic cardiomyopathy is a secondary complication of diabetes with an unclear etiology. Based on a...
Preferential and specific down-regulation of genes involved in fatty acid (FA) uptake and metabolism...
BackgroundLong chain acyl‐CoA synthetases (ACSL) catalyze long‐chain fatty acids (FA) conversion to ...
Background--Long-chain acyl-CoA synthetases (ACSL) catalyze the conversion of long-chain fatty acids...
In mice with temporally-induced cardiac-specific deficiency of acyl-CoA synthetase-1 (Acsl1H−/−), th...
In mice with temporally-induced cardiac-specific deficiency of acyl-CoA synthetase-1 (Acsl1H−/−), th...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Long-chain acyl coenzyme A (acyl-CoA) synthetase isoform 1 (ACSL1) catalyzes the synthesis of acyl-C...
Both during normal physiological development as well as in the face of cardiac stress, the heart exh...
Cardiovascular disease is the number one cause of death worldwide. In the heart, mitochondria provid...
Cardiovascular disease is the number one cause of death worldwide. In the heart, mitochondria provid...
Although enhanced cGMP signaling can prevent hypertrophy, mechanisms underlying this cardioprotectiv...
Background: During pressure overload-induced hypertrophy, unloading-induced atrophy, and diabetes me...
Includes bibliographical references (leaves 130-173).Metabolic remodeling is thought to be an import...
Diabetic cardiomyopathy is a secondary complication of diabetes with an unclear etiology. Based on a...
Preferential and specific down-regulation of genes involved in fatty acid (FA) uptake and metabolism...