Katzenellenbogen J A, Hsiung H M, Carlson K E, McGuire W L, Kraay R J, Katzenellenbogen B S
Biochemistry. 1975 Apr 22;14(8):1742-50. doi: 10.1021/bi00679a029.
The affinity of ortho-iodinated hexestrols for the estrogen binding protein from rat uterus, determined by competitive binding assay, decreases with progressive iodine substitution; 3-iodohexestrol (I-Hex) has a binding affinity 42% that of estradiol. Analysis of [3-H]-I-Hex binding in rat uterine cytosol by sucrose density gradient centrifugation shows both an estrogen-specific binding component (8 S) and a more abundant component (4 S) that is not estrogen specific. Scatchard analysis indicates that this latter binding is of high affinity (Kd equals to 3.7-8.3 times 10- minus-9 M) but is not uterine specific. Polyacrylamide gel electrophoresis shows that most of the [3-H]-I-Hex binding activity in serum and uterine cytosol is distinct from and anodic to the principal protein component (albumin), and that is comigrates with [14-C]thyroxine binding activity. In in vitro incubation of rat uteri, I-Hex can block the specific uptake of [3-H]estradiol into the nuclear fraction; it itself causes a translocation of estrogen-specific binding capacity (as measured by exchange) from cytoplasm to nuclei, and can induce the synthesis of an estrogen-specific uterine protein, all under conditions where it is not metabolically deiodinated to hexestrol. The uterotrophic activities of the iodohexestrols are in most cases comparable to that expected on the basis of their competitive binding affinities. However, selective, estrogen-specific uptake of [3-H]-I-Hex into rat uterus, either in vitro or in vivo, cannot be demonstrated.
通过竞争性结合试验测定,邻碘己烯雌酚与大鼠子宫雌激素结合蛋白的亲和力随碘取代程度的增加而降低;3-碘己烯雌酚(I-Hex)的结合亲和力为雌二醇的42%。用蔗糖密度梯度离心法分析大鼠子宫胞质溶胶中[3-H]-I-Hex的结合情况,结果显示既有雌激素特异性结合成分(8S),也有含量更丰富的非雌激素特异性成分(4S)。Scatchard分析表明,后一种结合具有高亲和力(解离常数Kd等于3.7 - 8.3×10⁻⁹ M),但并非子宫特异性。聚丙烯酰胺凝胶电泳显示,血清和子宫胞质溶胶中大部分[3-H]-I-Hex结合活性与主要蛋白质成分(白蛋白)不同且位于阳极,并且与[14-C]甲状腺素结合活性一同迁移。在大鼠子宫的体外孵育实验中,I-Hex能够阻断[3-H]雌二醇向核部分的特异性摄取;它自身会导致雌激素特异性结合能力(通过交换测定)从细胞质转移至细胞核,并且在未发生代谢脱碘生成己烯雌酚的条件下,能够诱导一种雌激素特异性子宫蛋白的合成。在大多数情况下,碘己烯雌酚的子宫营养活性与其竞争性结合亲和力预期的活性相当。然而,无论是在体外还是体内,均无法证明[3-H]-I-Hex能选择性地、特异性地摄取到大鼠子宫中。