Bulger W H, Muccitelli R M, Kupfer D
J Toxicol Environ Health. 1978 Sep-Nov;4(5-6):881-93. doi: 10.1080/15287397809529709.
Laboratory grade methoxychlor (99% pure), base-washed methoxychlor, and a metabolite of methoxychlor, 2,2-bis(p-hydroxyphenyl)-1,1,1-trichloroethane (HPTE), were tested for their ability to compete with [3 H] estradiol-17 beta ([3 H]E2) for specific binding to the estrogen receptor from immature rat uterine cytosol. The binding was determined on 10--30% sucrose gradients and by a dextran-coated charcoal assay and subsequent Scatchard plot analysis. On gradients, laboratory grade methoxychlor, but not base-washed methoxychlor, suppressed [3 H]E2 binding to the 8S estrogen receptor. However, the base-soluble fraction from washing of laboratory grade methoxychlor caused suppression o[3 H]E2 binding on sucrose gradients at a concentration as low as 3.6 ppm. Scatchard plot analysis indicated that the inhibition of binding observed with laboratory grade methoxychlor was competitive in nature and not caused by receptor destruction. It was concluded that laboratory grade methoxychlor contained a contaminant that was potentially estrogenic. HPTE, an in vivo metabolite of methoxychlor, caused a marked suppression of [3 H]E2 binding in the 85 region of the gradients. Analysis by Scatchard plot indicated that the effect of HPTE was not to decrease the number of E2 binding sites but merely to alter the affinity of binding to the receptor, presumably in a competitive manner. The low K1 value for HPTE suggested an extremely high affinity for uterine cytosolic E2 receptors.
对实验室级甲氧滴滴涕(纯度99%)、经碱洗的甲氧滴滴涕及其代谢产物2,2-双(对羟基苯基)-1,1,1-三氯乙烷(HPTE)进行了测试,以检测它们与[3H]雌二醇-17β([3H]E2)竞争结合未成熟大鼠子宫胞质溶胶中雌激素受体的能力。结合作用通过10%-30%蔗糖梯度离心、葡聚糖包被活性炭分析及随后的Scatchard作图分析来测定。在蔗糖梯度离心中,实验室级甲氧滴滴涕可抑制[3H]E2与8S雌激素受体的结合,而经碱洗的甲氧滴滴涕则无此作用。然而,实验室级甲氧滴滴涕洗涤后的碱溶性部分在浓度低至3.6 ppm时就能抑制[3H]E2在蔗糖梯度中的结合。Scatchard作图分析表明,实验室级甲氧滴滴涕对结合的抑制本质上是竞争性的,并非由受体破坏所致。由此得出结论,实验室级甲氧滴滴涕含有一种潜在具有雌激素活性的污染物。HPTE是甲氧滴滴涕的一种体内代谢产物,它能显著抑制梯度8S区域内[3H]E2的结合。Scatchard作图分析表明,HPTE的作用不是减少E2结合位点的数量,而仅仅是以竞争性方式改变与受体结合的亲和力。HPTE的低K1值表明其对子宫胞质溶胶E2受体具有极高的亲和力。