Coleman W B, Cunningham C C
Department of Biochemistry, Wake Forest University Medical Center, Winston-Salem, NC.
Biochim Biophys Acta. 1990 Aug 30;1019(2):142-50. doi: 10.1016/0005-2728(90)90136-r.
Liver mitochondria from rats fed ethanol chronically demonstrate an impaired ability to incorporate [35S]methionine into polypeptide products in vitro. This ethanol-induced effect on mitochondrial translation in vitro could not be attributed to significant differences in the methionine precursor pool sizes of ethanol and control mitochondria or to the acute effects of residual ethanol. The observed reduction of radiolabeled methionine incorporation into mitochondrial gene products of ethanol mitochondria in vitro reflects a decrease in the synthesis of all the mitochondrial gene products. However, the percentage of total radiolabel incorporated into each gene product is unaffected by ethanol, suggesting an ethanol-induced coordinate depression of mitochondrial protein synthesis. Moreover, SDS-PAGE and densitometry of submitochondrial particles from ethanol-fed and control rats demonstrated that the steady-state concentration of each of the mitochondrial gene products is decreased in ethanol-fed rats. This reduction of the steady-state concentration of the mitochondrial gene products may be related to the observed depressions of oxidative phosphorylation activities associated with hepatic mitochondria from ethanol-fed rats.
长期喂食乙醇的大鼠的肝脏线粒体在体外显示出将[35S]甲硫氨酸掺入多肽产物的能力受损。这种乙醇诱导的对体外线粒体翻译的影响不能归因于乙醇和对照线粒体中甲硫氨酸前体池大小的显著差异,也不能归因于残留乙醇的急性影响。在体外观察到的乙醇处理的线粒体中放射性标记的甲硫氨酸掺入线粒体基因产物的减少反映了所有线粒体基因产物合成的减少。然而,掺入每个基因产物的总放射性标记的百分比不受乙醇影响,这表明乙醇诱导了线粒体蛋白质合成的协同抑制。此外,对喂食乙醇和对照大鼠的亚线粒体颗粒进行SDS-PAGE和密度测定表明,喂食乙醇的大鼠中每个线粒体基因产物的稳态浓度降低。线粒体基因产物稳态浓度的这种降低可能与观察到的喂食乙醇的大鼠肝脏线粒体相关的氧化磷酸化活性的抑制有关。