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培养的牛肾上腺髓质嗜铬细胞中脑啡肽生物合成过程中羧肽酶肽激素加工酶的选择性调节。

Selective regulation of carboxypeptidase peptide hormone-processing enzyme during enkephalin biosynthesis in cultured bovine adrenomedullary chromaffin cells.

作者信息

Hook V Y, Eiden L E, Pruss R M

出版信息

J Biol Chem. 1985 May 25;260(10):5991-7.

PMID:4039723
Abstract

Bovine adrenomedullary chromaffin cells in culture were incubated with reserpine or forskolin, two agents acting through different mechanisms, which increase cellular [Met]enkephalin levels by 2-fold after 72 h. Cells were harvested and chromaffin granules were purified on a linear sucrose gradient. After reserpine treatment, carboxypeptidase-processing enzyme specific activity in chromaffin granule fractions was stimulated 1.9-fold, and Co2+-stimulated carboxypeptidase specific activity was stimulated 3-fold. The increase in enzyme activity was dependent on the time of reserpine treatment. Forskolin, on the other hand, had no significant effect on carboxypeptidase activity. The differential effects of reserpine and forskolin suggest that the carboxypeptidase-processing enzyme may be selectively regulated during periods of elevated enkephalin formation. Kinetic studies revealed that in cells exposed to reserpine, the Km value for [Met]enkephalin-Arg6 for the Co2+-stimulated carboxypeptidase activity was lowered to 0.136 from 0.447 mM, but there was no change in the Km values of the non-Co2+-stimulated carboxypeptidase activity from reserpine and control groups. Cellular levels of immunoreactive carboxypeptidase-processing enzyme, measured by a radioimmunoassay method, were not altered after reserpine treatment. These data suggest that while the total number of carboxypeptidase enzyme molecules remained constant, there may be a conversion of existing enzyme molecules to a more active form which displays a higher affinity for [Met]enkephalin-Arg6 in the presence of Co2+.

摘要

将培养的牛肾上腺髓质嗜铬细胞与利血平或福斯高林一起孵育,这两种药物通过不同机制起作用,72小时后可使细胞内[甲硫氨酸]脑啡肽水平提高2倍。收获细胞,并在线性蔗糖梯度上纯化嗜铬颗粒。利血平处理后,嗜铬颗粒组分中羧肽酶加工酶的比活性提高了1.9倍,Co2+刺激的羧肽酶比活性提高了3倍。酶活性的增加取决于利血平处理的时间。另一方面,福斯高林对羧肽酶活性没有显著影响。利血平和福斯高林的不同作用表明,在脑啡肽形成增加的时期,羧肽酶加工酶可能受到选择性调节。动力学研究表明,在暴露于利血平的细胞中,Co2+刺激的羧肽酶活性对[甲硫氨酸]脑啡肽-精氨酸6的Km值从0.447 mM降至0.136,但利血平组和对照组非Co2+刺激的羧肽酶活性的Km值没有变化。用放射免疫分析法测定,利血平处理后细胞内免疫反应性羧肽酶加工酶的水平没有改变。这些数据表明,虽然羧肽酶分子的总数保持不变,但可能存在现有酶分子向更具活性形式的转化,这种形式在Co2+存在下对[甲硫氨酸]脑啡肽-精氨酸6表现出更高的亲和力。

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