雌激素作用的化学探针:亲和标记。

J A Katzenellenbogen, K E Carlson, H J Johnson, H N Myers
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引用次数: 0

摘要

本文对大鼠和羔羊子宫雌激素受体光亲和标记剂的制备和评价进行了系统的研究。已经合成了几种具有光反应性的重氮羰基或叠氮化物功能的雌二醇衍生物和非甾体雌激素己甾醇。这些化合物的受体结合亲和力及其与雌激素结合位点(失活)光相互作用的能力可以通过竞争试验间接测定。已经制备了几种具有高结合亲和力和高失活效率的化合物,它们具有高比活性、氚标记形式。这些衍生物在未纯化的大鼠子宫受体制剂中的直接结合测量表明,虽然这些化合物与受体结合,但它们也显示出与非受体蛋白的相当大的非特异性结合。这些衍生物在大鼠子宫细胞质制剂中的辐照导致以共价方式将大量放射性掺入蛋白质中。然而,非特异性标记的数量如此之大,以至于无法证明雌激素部位特异性(通过未标记雌二醇的保护来表明)。最近,我们使用了从羔羊子宫中部分纯化的受体制备。该制剂中的受体已被轻度胰蛋白酶化分解,并可以天然形式电泳。在光标记的制备中,电泳分析显示一些共价结合到凝胶的受体区域与一个衍生物,而不是与另一个衍生物。评估了目前制备的光亲和标记试剂的有效性,并对设计新的、更有效的试剂提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical probes of estrogen action: affinity labeling.

A systemic approach has been taken in the preparation and evaluation of photoaffinity labeling agents for the estrogen receptor from rat and lamb uterus. Several derivatives of estradiol and the nonsteroidal estrogen, hexestrol, containing photoreactive diazocarbonyl or azide functions have been synthesized. The receptor binding affinity of these compounds and their capacity to photointeract with the estrogen binding site (inactivate) can be assayed inderectly by competition assays. Several of the compounds that showed both resonably high binding affinities and inactivation efficiencies have been prepared in high specific activity, tritium-labeled form. Direct binding measurements with these derivatives in unpurified rat uterine receptor preparations, show that while these compounds bind to the receptor, they also show considerable nonspecific binding to nonreceptor proteins. Irradiation of these derivatives in rat uterine cytosol preparations results in incorporation of large amounts of radioactivity into protein in a covalent fashion. The amount of nonspecific labeling is so large, however, that estrogen site specificity (indicated by protection with unlabeled estradiol) cannot be demonstrated. More recently, we have used a partially purified receptor preparation from lamb uterus. The receptor in this preparation has been disaggregated by mild trypsinization and can be electrophoresed in native form. Electrophoretic analysis of the proteins in photolabeled preparations show some covalent incorporation into the receptor region of the gel with one derivative but not with another. The effectiveness of the photoaffinity labeling reagents prepared thus far is assessed, and suggestions are made for the design of new, more effective reagents.

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