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维生素K依赖性羧化酶:大鼠肝脏中羧化酶及参与维生素K代谢的酶的亚细胞定位

Vitamin K dependent carboxylase: subcellular location of the carboxylase and enzymes involved in vitamin K metabolism in rat liver.

作者信息

Carlisle T L, Suttie J W

出版信息

Biochemistry. 1980 Mar 18;19(6):1161-7. doi: 10.1021/bi00547a019.

Abstract

Vitamin K dependent carboxylation of an exogenous peptide substrate and endogenous protein substrates, vitamin K epoxidation, and reduction of vitamin K epoxide were measured in subcellular fractions from rat liver. The rough microsomal fraction was highly enriched in all four activities; lower levels were found in smooth microsomes. Mitochondria, nuclei, and cytosol had negligible activities. The addition of 0.2% Triton X-100 to intact microsomes resulted in a 10-20-fold stimulation in carboxylation of a peptide substrate. This marked latency suggests that the active site of the carboxylase may be accessible only from the lumen of the microsomal membrane. A lumen-facing orientation of the carboxylase was also supported by its inaccessibility to trypsin in intact microsomes contrasted with marked inhibition by trypsin in detergent-permeabilized microsomes. Vitamin K epoxidase and epoxide reductase activities were also inhibited by trypsin much more effectively in permeabilized than in intact microsomes, although some degree of exposure at the cytosolic surface was also indicated. These data suggest that carboxylation is an early event in prothrombin synthesis occurring primarily on the lumen side of the rough endoplasmic reticulum membrane. The location of the vitamin K epoxidation-reduction cycle enzymes is consistent with their possible role in the carboxylation reaction.

摘要

在大鼠肝脏的亚细胞组分中测定了维生素K依赖性对外源肽底物和内源性蛋白质底物的羧化作用、维生素K环氧化作用以及维生素K环氧化物的还原作用。粗微粒体组分中这四种活性均高度富集;滑面微粒体中的活性水平较低。线粒体、细胞核和胞质溶胶的活性可忽略不计。向完整微粒体中添加0.2%的 Triton X-100可使肽底物的羧化作用增强10至20倍。这种显著的潜伏性表明,羧化酶的活性位点可能仅从微粒体膜的腔面才可接近。完整微粒体中的羧化酶对胰蛋白酶不可及,而经去污剂通透处理的微粒体中的羧化酶则受到胰蛋白酶的显著抑制,这也支持了羧化酶面向腔面的取向。尽管也表明在胞质表面有一定程度的暴露,但胰蛋白酶对维生素K环氧化酶和环氧化物还原酶活性的抑制在通透处理的微粒体中比在完整微粒体中更有效。这些数据表明,羧化作用是凝血酶原合成中的早期事件,主要发生在粗面内质网膜的腔面一侧。维生素K环氧化-还原循环酶的定位与其在羧化反应中可能发挥的作用相一致。

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