首页 | 本学科首页   官方微博 | 高级检索  
     


Presence of a metallothionein-like protein in the bovine pineal gland
Authors:A. Awad  P. Govitrapong  Y. Hama  M. Hegazy  M. Ebadi
Affiliation:(1) Present address: Department of Pharmacology, University of Nebraska College of Medicine, Omaha, Nebraska, USA;(2) Present address: Department of Pharmacology, Al-Azhar University Faculty of Medicine, Cairo, Egypt;(3) Present address: Laboratory of Neurobiology, Mahidol University, Nakornpthom, Thailand;(4) Present address: Departments of Psychiatry and Neurology, Yokohama City University School of Medicine, Yokohama, Japan
Abstract:Summary The high concentration of zinc in the bovine pineal gland prompted us to investigate the existence of a zinc-binding protein in this organ. In this study, we report that the subcellular distribution of zinc in the bovine pineal gland is nonuniform, with the crude nuclear, mitochondrial, microsomal, and supernatant fractions having 0.264±0.038, 0.160±0.019, 0.130±0.016, and 0.287±0.010 Mgrg zinc/mg protein, respectively. Furthermore, gel filtration studies using Sephadex G-75 and a 105,000 g supernatant fraction revealed two zinc binding protein peaks that bind 1.7 and 3.7 Mgrg Zn++/mg protein, respectively. Furthermore, purification of the protein peak with an elution volume (ve/vo) of 2.06 on anion exchange chromatography (DEAE-A 25) yielded a single protein peak which binds 10 Mgrg zinc/mg protein. The comparative high performance liquid Chromatographic (HPLC) profiles of the zinc-induced hepatic metallothionein isoform I (retention time=17.39 min) and of the bovine pineal metallothionein-like protein isoform I (retention time=17.49 min) are similar. Since zinc is a potent inhibitor of sulfhydryl-containing enzymes and receptor sites, we investigated the effects of zinc and found that it inhibited the binding of [3H]glutamate (IC 50=80 MgrM) and of [3H]spiroperidol (IC 50=0.6 mM) to the pineal membranes. The results of these studies are interpreted to indicate that the bovine pineal gland possesses an active and dynamic zinc homeostatic mechanism, whose precise function(s) remain(s) to be delineated.
Keywords:Trace metal transport  zinc homeostasis  melatonin synthesis  bovine pineal gland
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号