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利用生物素化雌二醇-抗生物素蛋白系统通过生物激素亲和色谱法纯化“未转化的”雌激素受体。

The use of the biotinyl estradiol-avidin system for the purification of "nontransformed" estrogen receptor by biohormonal affinity chromatography.

作者信息

Redeuilh G, Secco C, Baulieu E E

出版信息

J Biol Chem. 1985 Apr 10;260(7):3996-4002.

PMID:3980464
Abstract

Several biotinyl estradiol derivatives have been prepared by coupling estradiol 7 alpha-carboxylic acid to biotin via different linear linkers. All these compounds exhibit a high affinity for the estrogen receptor as determined by competitive binding assays against [3H]estradiol. These compounds also displaced the dye 4-hydroxyazobenzene-2'-carboxylic acid from the biotin-binding sites of avidin free or immobilized on agarose. It was demonstrated that only the derivatives bearing a long spacer chain (greater than 42 A greater than) between estradiol and biotin were able to bind receptor and avidin simultaneously, suggesting some steric hindrance. The biotin-avidin system has been investigated for the purification of the cytosoluble "nontransformed" estrogen receptor stabilized by sodium molybdate. The method relies on: 1) high biohormonal affinity of receptor for biotinyl estradiol derivative; 2) the specific selection by avidin-agarose column of biotinyl estradiol-receptor complexes; and 3) the biohormonal elution step by an excess of radioactive estradiol. Starting from unfractionated cytosol containing molybdate-stabilized nontransformed 8S estrogen receptor with estradiol 7 alpha-(CH2)10-CO-NH-(CH2)2-O-(CH2)2-O-(CH2)2-NH-CO-(CH2)3-NH-biotin, preliminary experiments using avidin-agarose chromatography and then a specific elution step by exchange with free [3H]estradiol, allowed a 500-1,500-fold purification. Further purification of estrogen receptor was obtained by ion exchange chromatography through a DEAE-Sephacel column and led to a congruent to 20% pure protein, assuming one binding site/65,000-Da unit. The hydrodynamic parameters of the purified receptor were essentially identical to those of molybdate-stabilized nontransformed receptor present in crude cytosol. The advantages of this double biotinyl steroid derivative-avidin chromatographic technique over more conventional affinity procedures are discussed and make it applicable to the purification of minute amounts of steroid receptors in a wide variety of tissues.

摘要

通过不同的线性连接子将雌二醇7α - 羧酸与生物素偶联,制备了几种生物素化雌二醇衍生物。通过与[³H]雌二醇的竞争性结合试验测定,所有这些化合物对雌激素受体均表现出高亲和力。这些化合物还能从游离或固定在琼脂糖上的抗生物素蛋白的生物素结合位点取代染料4 - 羟基偶氮苯 - 2'- 羧酸。结果表明,只有在雌二醇和生物素之间带有长间隔链(大于42 Å)的衍生物才能同时结合受体和抗生物素蛋白,这表明存在一定的空间位阻。研究了生物素 - 抗生物素蛋白系统用于纯化由钼酸钠稳定的可溶性“未转化”雌激素受体。该方法基于:1)受体对生物素化雌二醇衍生物具有高生物激素亲和力;2)抗生物素蛋白 - 琼脂糖柱对生物素化雌二醇 - 受体复合物的特异性选择;3)用过量放射性雌二醇进行生物激素洗脱步骤。从含有钼酸钠稳定的未转化8S雌激素受体的未分级细胞溶质开始,使用抗生物素蛋白 - 琼脂糖色谱法,然后通过与游离[³H]雌二醇交换进行特异性洗脱步骤,初步实验实现了500 - 1500倍的纯化。通过DEAE - Sephacel柱进行离子交换色谱法进一步纯化雌激素受体,假设一个结合位点/65,000 - Da单位,则得到约20%纯度的蛋白质。纯化受体的流体动力学参数与粗细胞溶质中存在的钼酸钠稳定的未转化受体基本相同。讨论了这种双生物素化类固醇衍生物 - 抗生物素蛋白色谱技术相对于更传统亲和方法的优点,使其适用于纯化各种组织中微量的类固醇受体。

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