Kaur S, Gill S S
Biochem Pharmacol. 1986 Apr 15;35(8):1299-308. doi: 10.1016/0006-2952(86)90275-3.
Mouse liver light and heavy mitochondrial fractions contain significant epoxide hydrolase activity in addition to that present in the cytosol and microsomes. As the mitochondrial fraction itself contains a number of subfractions, experiments were designed to determine the localization of the epoxide hydrolase activity in these subfractions. Subcellular fractions were prepared using livers from 6- to 8-week-old Swiss-Webster male mice. Using trans-stilbene oxide (TSO) as substrate, the highest activity was localized in the cytosolic fraction, followed by the light mitochondrial fraction. Subfractionation of the light mitochondrial fraction by isopycnic sucrose density gradient resulted in the separation of mitochondria from peroxisomes as monitored by marker enzymes. The separation of these two subcellular organelles was also confirmed by the electron microscopic studies. Distribution of TSO-hydrolase activity in the sucrose density gradient fractions closely resembled the activity distribution of the peroxisomal markers catalase and urate oxidase, but significant activity was also found in mitochondria. Treatment of mice with clofibrate selectively induced TSO-hydrolase in the cytosol without affecting this enzyme activity in the peroxisomal fraction. There was no difference in the distribution pattern of TSO-hydrolase and marker enzymes in sucrose density gradients of mitochondrial fractions from clofibrate-treated and control mice. The epoxide hydrolase activity in the peroxisomes is immunologically similar to, and also has the same molecular weight as, the cytosolic epoxide hydrolase.
小鼠肝脏的轻、重线粒体组分除了含有存在于胞质溶胶和微粒体中的环氧化物水解酶活性外,还含有显著的环氧化物水解酶活性。由于线粒体组分本身包含多个亚组分,因此设计了实验来确定环氧化物水解酶活性在这些亚组分中的定位。使用6至8周龄的瑞士韦伯斯特雄性小鼠的肝脏制备亚细胞组分。以反式芪氧化物(TSO)为底物,最高活性定位于胞质溶胶组分,其次是轻线粒体组分。通过等密度蔗糖密度梯度对轻线粒体组分进行亚分级分离,通过标记酶监测,可将线粒体与过氧化物酶体分离。这两种亚细胞器的分离也通过电子显微镜研究得到证实。TSO水解酶活性在蔗糖密度梯度组分中的分布与过氧化物酶体标记物过氧化氢酶和尿酸氧化酶的活性分布非常相似,但在线粒体中也发现了显著活性。用氯贝丁酯处理小鼠可选择性诱导胞质溶胶中的TSO水解酶,而不影响过氧化物酶体组分中的这种酶活性。在氯贝丁酯处理的小鼠和对照小鼠的线粒体组分的蔗糖密度梯度中,TSO水解酶和标记酶的分布模式没有差异。过氧化物酶体中的环氧化物水解酶活性在免疫学上与胞质溶胶环氧化物水解酶相似,并且分子量也相同。