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The use of deoxyribonucleic acid–cellulose chromatography and isoelectric focusing for the characterization and partial purification of steroid–receptor complexes

机译:脱氧核糖核酸-纤维素色谱法和等电聚焦法用于类固醇-受体复合物的表征和部分纯化

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摘要

1. Two characteristic properties of the specific high-affinity steroid-binding proteins or receptors, their ability to bind to DNA–cellulose and their relatively acidic isoelectric point, have been exploited as a means of purification. These two fundamental properties distinguish the receptors from the steroid-binding proteins in serum and the non-specific low-affinity steroid-binding proteins in hormone-responsive cells. 2. A significant degree of purification of both cytoplasmic and nuclear steroid–receptor complexes can be achieved with practical facility by these procedures. The purity of the receptor complexes is sufficient to enable studies on their possible control of metabolic processes to be investigated in the future. 3. After extensive purification the physicochemical properties of the cytoplasmic androgen–receptor complex, such as sedimentation coefficient, were unchanged. Further, the purified complex fully retained at least one of its fundamental physiological properties, namely the ability to transfer 5α-dihydrotestosterone (17β-hydroxy-5α-androstan-3-one) into chromatin in vitro. 4. The methods may also be employed for studying the changes in the structure and properties of the receptor complexes that are an essential prerequisite for the transfer of cytoplasmic receptor complexes into nuclear chromatin. The temperature-dependence of the binding of androgen–receptor complexes into chromatin is essentially due to a major change in cytoplasmic receptor complex before its attachment to nuclear chromatin. 5. The resolution of these analytical procedures was sufficient to enable a critical comparison of the receptor proteins from different male accessory glands to be undertaken. From these studies, no substantial evidence in support of the tissue specificity of androgen receptors could be established; rather the receptors from different androgen-dependent glands were remarkably similar in physicochemical properties. 6. Although the methods were initially developed for the partial purification of androgen–receptor complexes, they are equally suitable for the prompt and extensive purification of oestrogen–receptor and progesterone–receptor complexes.
机译:1.特定的高亲和力类固醇结合蛋白或受体的两个特征,即它们与DNA-纤维素的结合能力和相对酸性的等电点已被用作一种纯化方法。这两个基本特性将受体与血清中的类固醇结合蛋白和激素反应性细胞中的非特异性低亲和力类固醇结合蛋白区别开来。 2.通过这些程序可以通过实际操作实现对胞质和核甾体-受体复合物的大量纯化。受体复合物的纯度足以使将来对其代谢过程的可能控制进行研究。 3.大量纯化后,胞质雄激素受体复合物的理化特性(如沉降系数)未变。此外,纯化的复合物完全保留了其基本生理特性中的至少一种,即在体外将5α-二氢睾酮(17β-羟基-5α-雄烷-3-酮)转移到染色质中的能力。 4.该方法还可用于研究受体复合物的结构和性质的变化,这是将细胞质受体复合物转移到核染色质中的必要前提。雄激素受体复合物与染色质结合的温度依赖性主要是由于胞质受体复合物在附着到核染色质之前发生了重大变化。 5.这些分析程序的分辨率足以对来自不同雄性副腺的受体蛋白进行关键比较。从这些研究中,没有大量证据支持雄激素受体的组织特异性。相反,来自不同雄激素依赖性腺体的受体在理化性质上非常相似。 6.尽管最初开发了部分纯化雄激素受体复合物的方法,但它们同样适用于迅速,广泛地纯化雌激素受体复合物和孕酮受体复合物。

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