Properties of triiodothyronine binding sites in cerebral cortical cytosol.

S E Geel, L Gonzales, P S Timiras
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引用次数: 7

Abstract

Some properties of brain cytosol components that specifically bind L-triiodothyronine (T3) were examined in order to resolve their relevance and relationship to nuclear receptors. A marked variation in T3 binding activity was apparent among different brain areas. Binding exhibited temperature dependence and was maximal at 0 degrees C. The binding component was shown to be a protein that migrated as a single included peak on Sephadex G-100 columns at a position corresponding to a Stokes radium of 30A degrees and a M.W. of 54,000. On a linear glycerol gradient the T3-macromolecular complex was estimated to have a sedimentation constant of .4.2S. By combining sedimentation and gel filtration data the calculated M.W. was 53,000. With DEAE-cellulose chromatography the T3 complex eluted as a single peak at 115mM KH2PO4. The results indicate that the properties of the cytosol thyronine-binding protein are similar in many respects to those reported for nuclear receptors. In addition, the regional and developmental binding parameters parallel those for nuclei. We conclude that cytosolic recognition sites may function in the modulation of nuclear receptors and in addition serve to distinguish target from non-target tissue.

脑皮质胞浆中三碘甲状腺原氨酸结合位点的性质。
研究了特异性结合l -三碘甲状腺原氨酸(T3)的脑细胞质组分的一些性质,以确定它们与核受体的相关性和关系。T3结合活性在不同脑区有明显差异。结合表现出温度依赖性,在0℃时达到最大值。结合组分是一种蛋白质,在Sephadex G-100色谱柱上以单个包含峰的形式迁移,位置对应于Stokes半径为30A度,M.W.为54,000。在线性甘油梯度上,估计t3 -大分子复合物的沉降常数为。4.2 s。通过结合沉淀和凝胶过滤数据,计算出的平均分子量为53,000。采用deae -纤维素色谱法,T3配合物在115mM KH2PO4下作为单峰洗脱。结果表明,胞浆甲状腺原氨酸结合蛋白的性质在许多方面与报道的核受体相似。此外,区域和发育结合参数与细胞核相似。我们得出的结论是,细胞质识别位点可能在核受体的调节中起作用,此外还可以区分靶组织和非靶组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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