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绵羊精囊微粒体中两种不同的前列腺素H-前列腺素E异构酶的免疫化学和动力学证据。

Immunochemical and kinetic evidence for two different prostaglandin H-prostaglandin E isomerases in sheep vesicular gland microsomes.

作者信息

Tanaka Y, Ward S L, Smith W L

出版信息

J Biol Chem. 1987 Jan 25;262(3):1374-81.

PMID:3100531
Abstract

Splenic lymphocytes from mice immunized with a partially purified prostaglandin (PG) H-PGE isomerase from sheep vesicular glands were fused with SP2/0-Ag14 myeloma cells. Two spleen cell-myeloma hybrids (hei-7 and hei-26) were selected and cloned. The mouse antibodies secreted by the two hybrids, IgG1 (hei-7) and IgG1 (hei-26), caused immunoprecipitation of a maximum of 45 and 22%, respectively, of the solubilized PGH-PGE isomerase activity of sheep vesicular gland; immunoprecipitation of activity by the two antibodies was additive. The antigens reactive with IgG1 (hei-7) and IgG1 (hei-26) were identified as proteins with Mr = 17,500 and 180,000, respectively, by Western transfer blotting or sodium dodecyl sulfate-polyacrylamide gel electrophoresis of immunoprecipitated 125I-labeled microsomes. The PGH-PGE isomerase activities precipitated by IgG1 (hei-7) and IgG1 (hei-26) exhibited different kinetic properties with respect to time course, Km for PGH2, and concentration dependence for GSH. No significant GSH-S-transferase activity was present in these immunoprecipitates. These data indicate that there are at least two different proteins in sheep vesicular gland microsomes capable of catalyzing GSH-dependent PGH-PGE isomerase reactions. IgG1 (hei-7), but not IgG1 (hei-26), caused coprecipitation of PGH synthase and PGH-PGE isomerase activities when incubated with intact right-side-out vesicular gland microsomes. Thus, the epitope for IgG1 (hei-7) is located on the cytoplasmic surface of those microsomal spheres which contain PGH synthase. This latter finding suggests that the isomerase reactive with IgG1 (hei-7) is involved in PGE synthesis in sheep vesicular glands.

摘要

用来自绵羊精囊的部分纯化前列腺素(PG)H-PGE异构酶免疫小鼠,获取其脾淋巴细胞,并与SP2/0-Ag14骨髓瘤细胞进行融合。挑选并克隆了两个脾细胞-骨髓瘤杂交细胞株(hei-7和hei-26)。这两个杂交细胞株分泌的小鼠抗体IgG1(hei-7)和IgG1(hei-26),分别使绵羊精囊可溶的PGH-PGE异构酶活性的最大免疫沉淀率达到45%和22%;两种抗体对活性的免疫沉淀作用是累加的。通过对免疫沉淀的125I标记微粒体进行蛋白质印迹法或十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析,与IgG1(hei-7)和IgG1(hei-26)反应的抗原分别被鉴定为分子量为17,500和180,000的蛋白质。IgG1(hei-7)和IgG1(hei-26)沉淀的PGH-PGE异构酶活性在时间进程、对PGH2的Km值以及对谷胱甘肽(GSH)的浓度依赖性方面表现出不同的动力学特性。这些免疫沉淀物中不存在明显的谷胱甘肽S-转移酶活性。这些数据表明,绵羊精囊微粒体中至少有两种不同的蛋白质能够催化依赖GSH的PGH-PGE异构酶反应。当与完整的外翻精囊微粒体一起孵育时,IgG1(hei-7)而非IgG1(hei-26)会导致PGH合酶和PGH-PGE异构酶活性的共沉淀。因此,IgG1(hei-7)的表位位于那些含有PGH合酶的微粒体球的细胞质表面。后一发现表明,与IgG1(hei-7)反应的异构酶参与了绵羊精囊中PGE的合成。

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