Van Hoof F, Hue L, Vamecq J, Sherratt H S
Biochem J. 1985 Jul 15;229(2):387-97. doi: 10.1042/bj2290387.
An ultrastructural and biochemical study of the toxic and hypoglycaemic effects of hypoglycin and pent-4-enoate was made on the livers of normal and clofibrate-fed rats. Injection of hypoglycin to rats doubles (from 22% to 44%) the volume fraction of mitochondria and decreases (from 1.05% to 0.26%) the volume fraction of peroxisomes in hepatocytes. The fast-acting toxin pent-4-enoate causes few ultrastructural changes except for the accumulation of lipids. In male adult rats fed with 0.5% clofibrate in their diet for 1-2 months, the volume fraction occupied by peroxisomes and mitochondria in hepatocytes rose to 6.26% and 29.5% respectively. Clofibrate feeding apparently protected the animals against the toxic, hypoglycaemic and hypothermic effects of hypoglycin and of pent-4-enoate, and completely prevented the ultrastructural damage caused by hypoglycin. After hypoglycin administration, hepatic mitochondrial butyryl-CoA dehydrogenase activity was inhibited by more than 90% and, surprisingly, the activity of the peroxisomal enzymes studied was largely preserved. When hypoglycin was given to rats fed on a clofibrate-containing diet, the oxidation of decanoylcarnitine, which was incomplete after hypoglycin treatment alone, remained incomplete with uncoupled mitochondria, but became apparently complete with coupled mitochondria. In the latter condition, there was a slowing of the rate during the last quarter of the pulse of oxygen uptake. Further, butyryl-CoA dehydrogenase activity was much less affected by hypoglycin in clofibrate-fed animals. Pent-4-enoate does not inhibit beta-oxidation in coupled mitochondria from clofibrate-treated rats.
对正常大鼠和用氯贝丁酯喂养的大鼠的肝脏进行了关于降糖氨酸和戊-4-烯酸酯的毒性和降血糖作用的超微结构及生化研究。给大鼠注射降糖氨酸会使肝细胞中线粒体的体积分数加倍(从22%增至44%),并使过氧化物酶体的体积分数降低(从1.05%降至0.26%)。速效毒素戊-4-烯酸酯除了导致脂质积累外,几乎不引起超微结构变化。在雄性成年大鼠的饮食中添加0.5%氯贝丁酯喂养1 - 2个月后,肝细胞中过氧化物酶体和线粒体所占的体积分数分别升至6.26%和29.5%。用氯贝丁酯喂养显然保护了动物免受降糖氨酸和戊-4-烯酸酯的毒性、降血糖和体温过低的影响,并完全防止了降糖氨酸引起的超微结构损伤。给予降糖氨酸后,肝脏线粒体丁酰辅酶A脱氢酶活性被抑制超过90%,令人惊讶的是,所研究的过氧化物酶体酶的活性大部分得以保留。当给食用含氯贝丁酯饮食的大鼠注射降糖氨酸时,单独用降糖氨酸处理后不完全的癸酰肉碱氧化,在未偶联线粒体时仍不完全,但在偶联线粒体时明显变得完全。在后一种情况下,在氧摄取脉冲的最后四分之一期间速率减慢。此外,在食用氯贝丁酯的动物中,丁酰辅酶A脱氢酶活性受降糖氨酸的影响要小得多。戊-4-烯酸酯不会抑制用氯贝丁酯处理的大鼠的偶联线粒体中的β-氧化。