Moudgil V K, Caradonna V M
J Steroid Biochem. 1985 Aug;23(2):125-32. doi: 10.1016/0022-4731(85)90226-2.
Effects of aurintricarboxylic acid (ATA) were examined on the DNA binding properties of rat liver glucocorticoid-receptor complex. The DNA-cellulose binding capacity of the glucocorticoid-receptor complex was completely abolished by a pretreatment of receptor preparation with 0.1-0.5 mM ATA at 4 degrees C. The half-maximal inhibition (i.d.50) in the DNA binding of [3H]triamcinolone acetonide-receptor complex [( 3H]TARc) was observed at 130- and 40 microM ATA depending upon whether the inhibitor was added prior to or following the receptor activation. The entire DNA-cellulose bound [3H]TARc could be extracted in a concentration-dependent manner by incubation with 2-100 microns ATA. The [3H]TARc remained intact under the above conditions, the receptor in both control and ATA-treated preparations sedimented in the same region in salt-containing 5-20% sucrose gradients. The action of ATA appeared to be on the receptor and not on DNA-cellulose. The DNA-binding capacity of ATA-treated receptor preparations could be recovered upon exhaustive dialysis. The treatment with ATA did not appear to change the ionic behavior of heat activated GRc; the receptor in both control and the ATA-treated preparations showed similar elution profiles. Therefore, ATA appears to alter the binding to and dissociation of glucocorticoid-receptor complex from DNA. The use of ATA should offer a good chemical probe for analysis of the DNA binding domain(s) of the glucocorticoid receptor.
研究了金精三羧酸(ATA)对大鼠肝脏糖皮质激素受体复合物DNA结合特性的影响。在4℃下,用0.1 - 0.5 mM ATA预处理受体制剂后,糖皮质激素受体复合物与DNA纤维素的结合能力完全丧失。根据抑制剂是在受体激活之前还是之后添加,[3H]曲安奈德-受体复合物[(3H)TARc]与DNA结合的半数最大抑制浓度(i.d.50)分别为130μM和40μM ATA。通过与2 - 100μM ATA孵育,可浓度依赖性地提取与DNA纤维素结合的全部[3H]TARc。在上述条件下,[3H]TARc保持完整,对照制剂和经ATA处理的制剂中的受体在含5 - 20%蔗糖的盐梯度中沉淀在同一区域。ATA的作用似乎是作用于受体而非DNA纤维素。经ATA处理的受体制剂的DNA结合能力在彻底透析后可恢复。ATA处理似乎并未改变热激活GRc的离子行为;对照制剂和经ATA处理的制剂中的受体显示出相似的洗脱图谱。因此,ATA似乎改变了糖皮质激素受体复合物与DNA的结合及解离。ATA的使用应为分析糖皮质激素受体的DNA结合结构域提供一种良好的化学探针。