Guerrieri F, Kalous M, Capozza G, Muolo L, Drahota Z, Papa S
Institute of Medical Biochemistry and Chemistry, University of Bari, Italy.
Biochem Mol Biol Int. 1994 May;33(1):117-29.
The effect of aging on rat liver regeneration and on the FoF1-ATP synthase complex of isolated liver mitochondria was followed after partial (70%) hepatectomy. ATP hydrolase activity in submitochondrial particles prepared from regenerating liver was first depressed; the time needed to reach the lowest activity was age dependent. This decrease was accompanied by parallel decrease of i) the respiratory rate of succinate supplemented mitochondria in state III; ii) the respiratory control index; iii) the rate of synthesis of ATP in succinate supplemented submitochondrial particles. This first phase of liver regeneration, characterized at all ages by a lag phase in the growth, was followed by a second phase in which the tissue mass was restored and the enzyme activities normalized. Immunoblot analysis showed that the changes in the catalytic activities of the FoF1-ATP synthase observed during liver regeneration were accompanied by parallel changes in the amount of subunits of both the catalytic (F1) and the membrane (Fo) sector of the complex.
在大鼠进行70%部分肝切除术后,研究了衰老对大鼠肝脏再生以及对分离的肝线粒体中F₀F₁ - ATP合酶复合物的影响。从再生肝脏制备的亚线粒体颗粒中的ATP水解酶活性最初降低;达到最低活性所需的时间取决于年龄。这种降低伴随着以下各项的平行降低:i)在状态III下琥珀酸补充的线粒体的呼吸速率;ii)呼吸控制指数;iii)琥珀酸补充的亚线粒体颗粒中ATP的合成速率。肝脏再生的第一阶段,在所有年龄段均以生长的延迟期为特征,随后是第二阶段,在此阶段组织质量得以恢复且酶活性恢复正常。免疫印迹分析表明,在肝脏再生过程中观察到的F₀F₁ - ATP合酶催化活性的变化伴随着该复合物催化(F₁)和膜(F₀)部分亚基数量的平行变化。