首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Localization and biosynthesis of NADH-cytochrome b5 reductase an integral membrane protein in rat liver cells. I. Distribution of the enzyme activity in microsomes mitochondria and golgi complex
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Localization and biosynthesis of NADH-cytochrome b5 reductase an integral membrane protein in rat liver cells. I. Distribution of the enzyme activity in microsomes mitochondria and golgi complex

机译:大鼠肝脏细胞中不可或缺的膜蛋白NADH-细胞色素b5还原酶的定位和生物合成。 I.酶活性在微粒体线粒体和高尔基体中的分布

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摘要

The subcellular distribution of NADH-cytochrome b5 reductase in rat liver cells was reinvestigated. In fresh heavy and light Golgi fractions (GF3 and GF1 + 2) and in mitochondria, the specific activity of rotenone-insensitive NADH-cytochrome c reductase was approximately 100, 60, and 30%, respectively, of the value found in microsomes. However, the Golgi enzyme was unstable inasmuch as pelleting and resuspending the fresh fractions resulted in a considerable inactivation (40--60%), which was further increased with subsequent storage at 4 degrees C. A similar inactivation was observed using cytochrome b5 but not ferricyanide as electron acceptor. The inactivation of Golgi NADH-cytochrome c reductase activity was independent of the protein concentration of the fractions during storage, was unaffected by the addition of the antioxidant butylated hydroxytoluene, but was partly prevented by buffering the fractions at neutral pH and by storage at--20 degrees C. A total Golgi fraction was analyzed by density equilibration on continuous sucrose gradients after exposure to digitonin. As expected, the distribution of both protein and galactosyl transferase were shifted to higher densities by this treatment. However, not all galactosyl transferase-bearing elements were shifted to the same extent by exposure to the detergent, suggesting a biochemical heterogeneity of the Golgi complex. In contrast to their behavior in microsomes, the distribution of NADH- cytochrome c reductase and cytochrome b5 of Golgi fractions was shifted by digitonin, although to a lesser extent than that of galactosyl transferase. These results indicate that NADH-cytochrome b5 reductase is an authentic component of Golgi membranes, as well as of microsomes and of mitochondria. The conflicting results reported in the past on the Golgi localization of the enzyme could be due, on the one hand, to the differential lability of the activity in its various subcellular locations and, on the other, to the heterogeneity of the Golgi complex in terms of both cholesterol and enzyme distribution.
机译:重新研究了大鼠肝细胞中NADH-细胞色素b5还原酶的亚细胞分布。在新鲜的重和轻高尔基部分(GF3和GF1 + 2)和线粒体中,鱼藤酮不敏感的NADH-细胞色素C还原酶的比活性分别约为微粒体中的值的100%,60%和30%。但是,高尔基体酶不稳定,因为沉淀和重悬新鲜级分会导致相当大的失活(40--60%),这种失活在随后于4°C储存时会进一步增加。使用细胞色素b5观察到了类似的失活,但没有铁氰化物作为电子受体。高尔基NADH-细胞色素c还原酶活性的失活与级分中蛋白质的浓度无关,不受添加抗氧化剂丁基化羟基甲苯的影响,但通过在中性pH下缓冲级分并在- 20℃。在暴露于洋地黄皂苷后,通过在连续的蔗糖梯度上进行密度平衡来分析总的高尔基级分。如预期的那样,通过这种处理,蛋白质和半乳糖基转移酶的分布都转移到了更高的密度。然而,并非所有带有半乳糖基转移酶的元件都通过暴露于去污剂而转移到相同的程度,这表明高尔基体的生化异质性。与它们在微粒体中的行为相反,高尔基体的NADH-细胞色素c还原酶和细胞色素b5的分布被洋地黄皂苷移动,尽管程度比半乳糖基转移酶要小。这些结果表明,NADH-细胞色素b5还原酶是高尔基膜,微粒体和线粒体的真实成分。过去在酶的高尔基体定位上报道的相互矛盾的结果,一方面可能是由于其在各个亚细胞位置的活性的差异性不稳定性,另一方面是由于高尔基体的异质性胆固醇和酶的分布

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