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小鼠器官中的皮质类固醇侧链异构酶:动力学和免疫学研究。

Corticosteroid side-chain isomerase in mouse organs: kinetic and immunologic studies.

作者信息

Marandici A, Monder C

机构信息

Population Council, Center for Biomedical Research, New York, New York 10021.

出版信息

Steroids. 1990 Nov;55(11):516-20. doi: 10.1016/0039-128x(90)90091-o.

Abstract

We have investigated the distribution of corticosteroid side-chain (CSC) isomerase in the tissues of mice using as criteria its enzyme activity and immunoreactivity with monospecific polyclonal antibodies generated in rabbits. CSC isomerase was present in all organs examined. The liver and kidney contained the highest activity. The strain-dependent differences that we had previously reported for liver (i.e., BALB/c greater than C57BL/6) extended to the other organs, including the kidney, brain, heart, muscle, pancreas, testis, thymus, and lung. Western blot analysis showed a single antigen, identical in all tissues, corresponding in mobility to purified CSC isomerase. The intensities of the bands were generally proportional to enzyme activities. Titration of homogeneous enzyme with the IgG fraction of antiserum (unfractionated serum had some CSC isomerase activity) caused an increase in activity, followed by rapid inactivation after the addition of more antiserum. The broad distribution of CSC isomerase suggests that the ketol-aldol interconversion of the CSC may play a role other than, or in addition to, initiating metabolic inactivation of corticosteroids.

摘要

我们使用皮质类固醇侧链(CSC)异构酶的酶活性以及与兔源单特异性多克隆抗体的免疫反应性作为标准,研究了其在小鼠组织中的分布情况。在所检查的所有器官中均存在CSC异构酶。肝脏和肾脏中的活性最高。我们之前报道的肝脏中存在的品系依赖性差异(即BALB/c大于C57BL/6)扩展到了其他器官,包括肾脏、大脑、心脏、肌肉、胰腺、睾丸、胸腺和肺。蛋白质免疫印迹分析显示所有组织中均有一种单一抗原,其迁移率与纯化的CSC异构酶相同。条带强度通常与酶活性成正比。用抗血清的IgG组分滴定纯酶(未分级的血清具有一些CSC异构酶活性)会导致活性增加,加入更多抗血清后则会迅速失活。CSC异构酶的广泛分布表明,CSC的酮醇-醛醇相互转化可能在启动皮质类固醇代谢失活之外或之外还发挥作用。

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