Brandes L J, Hermonat M W
Biochem Biophys Res Commun. 1984 Sep 17;123(2):724-8. doi: 10.1016/0006-291x(84)90289-4.
A new para-diphenylmethyl derivative, N,N-diethyl-2-[(4-phenylmethyl)-phenoxy]-ethanamine X HCl (N,N-DPPE) has been synthesized which binds with high affinity to the anti-estrogen binding site found in male rat liver microsomes. However, no evidence of significant interaction with the estrogen receptor can be observed at or below 10 microM in rat uterine cytosols; 10 nM N,N-DPPE fails to significantly induce progesterone receptor in MCF-7 cells. Tamoxifen also binds to anti-estrogen binding site but, unlike N,N-DPPE, binds significantly to estrogen receptor at much lower concentrations and induces MCF-7 progesterone receptor. This property of high affinity for anti-estrogen binding site but not for estrogen receptor may make N,N-DPPE an important probe for the study of anti-estrogen binding site and its biological relevance.
一种新的对二苯甲基衍生物,N,N-二乙基-2-[(4-苯甲基)-苯氧基]-乙胺盐酸盐(N,N-DPPE)已被合成,它与雄性大鼠肝微粒体中发现的抗雌激素结合位点具有高亲和力。然而,在大鼠子宫胞质溶胶中,在10微摩尔或更低浓度时,未观察到与雌激素受体有显著相互作用的证据;10纳摩尔的N,N-DPPE未能显著诱导MCF-7细胞中的孕酮受体。他莫昔芬也与抗雌激素结合位点结合,但与N,N-DPPE不同,它在低得多的浓度下就能与雌激素受体显著结合,并诱导MCF-7孕酮受体。这种对抗雌激素结合位点具有高亲和力而对雌激素受体没有高亲和力的特性,可能使N,N-DPPE成为研究抗雌激素结合位点及其生物学相关性的重要探针。