Kawada K, Dolence E K, Morita H, Kometani T, Watt D S, Balapure A, Fitz T A, Orlicky D J, Gerschenson L E
Department of Chemistry, University of Kentucky, Lexington 40506.
J Med Chem. 1989 Jan;32(1):256-64. doi: 10.1021/jm00121a046.
The development of a prostaglandin PGF2 alpha photoaffinity probe led to the synthesis and biological evaluation of azide-substituted 17-phenyl-18,19,20-trinorprostaglandin F2 alpha and 16-phenoxy-17,18,19,20-tetranorprostaglandin F2 alpha derivatives. Two approaches for the preparation of iodinated versions of these prostaglandins were evaluated: (1) iodination of a phenyl azide bearing an activating hydroxyl group and (2) iodination of an aniline precursor to the phenyl azide group and subsequent conversion of the aniline to the phenyl azide. In the first approach, 17-(4-azido-2-hydroxyphenyl)-18,19,20-trinorprostaglandin F2 alpha, 16-(5-azido-3-hydroxyphenoxy)-17,18,19,20-tetranorprostaglandin F2 alpha, and 16-(4-azido-2-hydroxyphenoxy)-17,18,19,20-tetranorprostaglandin F2 alpha were prepared by using the Corey synthesis, but were biologically inactive presumably as a result of the hydrophilic phenolic hydroxyl group. In the second approach, the iodination of a 17-(4-aminophenyl)-18,19,20-trinorprostaglandin F2 alpha derivative delivered 17-(4-azido-3-iodophenyl)-18,19,20-trinorprostaglandin F2 alpha, which exhibited competitive binding with natural [3H]PGF2 alpha to ovine luteal cells and to plasma membranes of bovine corpora lutea. [125I]-17-(4-Azido-3-iodophenyl)-18,19,20-trinorprostaglandin F2 alpha was utilized in a preliminary photoaffinity cross-linking experiment.
前列腺素PGF2α光亲和探针的研发促使了叠氮取代的17-苯基-18,19,20-三降前列腺素F2α和16-苯氧基-17,18,19,20-四降前列腺素F2α衍生物的合成及生物学评价。对制备这些前列腺素碘化形式的两种方法进行了评估:(1)对带有活化羟基的苯基叠氮进行碘化,以及(2)对苯基叠氮基团的苯胺前体进行碘化,随后将苯胺转化为苯基叠氮。在第一种方法中,通过Corey合成法制备了17-(4-叠氮基-2-羟基苯基)-18,19,20-三降前列腺素F2α、16-(5-叠氮基-3-羟基苯氧基)-17,18,19,20-四降前列腺素F2α和16-(4-叠氮基-2-羟基苯氧基)-17,18,19,20-四降前列腺素F2α,但可能由于亲水性酚羟基的存在,它们没有生物学活性。在第二种方法中,17-(4-氨基苯基)-18,19,20-三降前列腺素F2α衍生物的碘化反应生成了17-(4-叠氮基-3-碘苯基)-18,19,20-三降前列腺素F2α,它与天然的[3H]PGF2α对绵羊黄体细胞和牛黄体的质膜表现出竞争性结合。[125I]-17-(4-叠氮基-3-碘苯基)-18,19,20-三降前列腺素F2α被用于初步的光亲和交联实验。