[对乙酰氨基酚诱导的肝炎在蛋白质营养剥夺背景下肝脏线粒体呼吸链细胞色素部分结构功能状态的特殊性]。

Biofizika Pub Date : 2015-05-01
O N Voloshchuk, G P Kopylchuk
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引用次数: 0

摘要

研究了在对乙酰氨基酚诱导的消化性蛋白质缺失肝炎条件下,呼吸链细胞色素部分关键酶细胞色素氧化酶的活性,线粒体细胞色素b、c1、c和aa3的定量再分布,细胞色素血红素代谢关键酶δ氨基乙酰酸合成酶和血红素加氧酶的活性。研究发现,在对乙酰氨基酚诱导的肝炎条件下,在食物剥夺蛋白质的背景下,细胞色素氧化酶活性受到抑制,线粒体细胞色素定量含量下降,而三角洲氨基乙酰酸合成酶和血红素加氧酶活性升高。在中毒性肝损伤动物中,维持在食物剥夺蛋白质的条件下,线粒体细胞色素b、c1、c和aa3的定量含量在背景下逐渐降低。血红素加氧酶活性的增加和δ氨基乙酰酸合成酶活性在对照水平上的保持是确定的。由此得出结论,蛋白质的营养剥夺是导致呼吸链细胞色素部分结构功能完整性紊乱的关键因素。所鉴定的变化可被认为是蛋白质营养剥夺条件下能量生物转化系统紊乱的可能机制之一。
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[Peculiarities of the Structural-Functional State of the Cytochrome Part of Liver Mitochondrial Respiratory Chain under Conditions of Acetaminophen-induced Hepatitis against the Background of Alimentary Deprivation of Protein].

Activity of the key enzyme of the cytochrome part of the respiratory chain--cytochrome oxidase, quantitative redistribution of mitochondrial cytochromes b, c1, c and aa3, activity of the key enzymes of cytochromes' heme metabolism--delta-aminolevulinate synthase and heme oxygenase under conditions of acetaminophen-induced hepatitis against the background of alimentary deprivation of protein were studied. It was found out, that under conditions of acetaminophen-induced hepatitis against the background of alimentary deprivation of protein, an inhibition of cytochrome oxidase activity and a decrease in the quantitative content of mitochondrial cytochromes against the background of the increase in the delta-aminolevulinate synthase and heme oxygenase activity are observed. In animals with toxic liver injury, maintained under conditions of alimentary deprivation of protein, a progressive decrease in the quantitative content of mitochondrial cytochromes b, c1, c and aa3 against the background. of the increase in heme oxygenase activity and preservation of delta-aminolevulinate synthase activity on the control level is identified. The conclusion was made, that alimentary deprivation of protein is a critical factor for the development of the disturbances of structural-functional integrity of the cytochromic part of the respiratory chain. The identified changes may be considered as one of the possible mechanisms of energy biotransformation system disturbances under conditions of alimentary deprivation of protein.

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