Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD). Lysine acetylation is known to regulate numerous mitochondrial metabolic pathways, and recent reports demonstrate that alcohol-induced protein acylation negatively impacts these processes. To identify regulatory mechanisms attributed to alcohol-induced protein post-translational modifications, we employed a model of alcohol consumption within the context of wild type (WT), sirtuin 3 knockout (SIRT3 KO), and sirtuin 5 knockout (SIRT5 KO) mice to manipulate hepatic mitochondrial protein acylation. Mitochondrial fractions were examined by label-free quantitative HPLC–MS/MS to reveal competition between lysine acetylation and succinylation. A ...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
AbstractIn this study, we present the novel findings that chronic ethanol consumption induces mitoch...
Chronic alcohol consumption induces hepatic oxidative stress resulting in production of highly react...
Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD...
Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD...
<div><p>Mitochondrial protein acetylation increases in response to chronic ethanol ingestion in mice...
Mitochondrial protein hyperacetylation is a known consequence of sustained ethanol consumption and h...
Mitochondrial protein acetylation increases in response to chronic ethanol ingestion in mice, and is...
Mitochondrial protein acetylation is associated with a host of diseases including cancer, Alzheimer’...
Hepatic oxidative stress and subsequent lipid peroxidation are well-recognized consequences of susta...
Hepatic oxidative stress and subsequent lipid peroxidation are well-recognized consequences of susta...
AbstractChronic alcohol consumption induces hepatic oxidative stress resulting in production of high...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Aug. 11, 2014...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
AbstractIn this study, we present the novel findings that chronic ethanol consumption induces mitoch...
Chronic alcohol consumption induces hepatic oxidative stress resulting in production of highly react...
Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD...
Mitochondrial dysfunction is one of many key factors in the etiology of alcoholic liver disease (ALD...
<div><p>Mitochondrial protein acetylation increases in response to chronic ethanol ingestion in mice...
Mitochondrial protein hyperacetylation is a known consequence of sustained ethanol consumption and h...
Mitochondrial protein acetylation increases in response to chronic ethanol ingestion in mice, and is...
Mitochondrial protein acetylation is associated with a host of diseases including cancer, Alzheimer’...
Hepatic oxidative stress and subsequent lipid peroxidation are well-recognized consequences of susta...
Hepatic oxidative stress and subsequent lipid peroxidation are well-recognized consequences of susta...
AbstractChronic alcohol consumption induces hepatic oxidative stress resulting in production of high...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Aug. 11, 2014...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
Background: Epigenetic dysregulation through ethanol (EtOH)‐induced changes in DNA methylation and h...
AbstractIn this study, we present the novel findings that chronic ethanol consumption induces mitoch...
Chronic alcohol consumption induces hepatic oxidative stress resulting in production of highly react...