Tsui H W, Okey A B
Can J Physiol Pharmacol. 1981 Sep;59(9):927-31. doi: 10.1139/y81-143.
The Ah receptor, which regulates induction of aryl hydrocarbon hydroxylase (cytochrome P1-450), can be assayed using [3H] 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) as the radioligand. Sucrose density gradient (SDG) centrifugation is the most reliable method for detecting and quantitating Ah receptor; however, previous gradient assays in swinging bucket rotors (SBR) have required overnight centrifugation to achieve adequate separation of specific receptor peaks from nonspecific binding to other cytosolic components. These lengthy runs limit the number of assays which can be performed and could permit excessive dissociation of radioligand from the receptor. Thus, we tested brief (2-h) SDG centrifugation assays in a vertical tube rotor (VTR) as a possible alternative to prolonged SBR runs. Two-hour VTR runs yield gradient profiles very similar to those obtained with 16-h runs in an SBR and the calculated sedimentation coefficient (in low ionic strength buffer) is about 9.6 S for the Ah receptor assayed in either rotor. The concentration of Ah receptor in cytosols from liver, lung, kidney, and testis of C57BL/6J mice is the same by VTR analysis as when measured by SBR analysis. Thus, extensive dissociation of [3H]TCDD from the Ah receptor does not appear to occur in cytosols from a variety of tissues even with run times up to 16 h. Assays performed by rapid VTR centrifugation appear equally valid to those obtained by overnight SBR centrifugation.
芳烃受体可调节芳烃羟化酶(细胞色素P1 - 450)的诱导,可使用[3H] 2,3,7,8 - 四氯二苯并 - p - 二恶英(TCDD)作为放射性配体进行检测。蔗糖密度梯度(SDG)离心是检测和定量芳烃受体最可靠的方法;然而,先前在摆动桶转子(SBR)中进行的梯度测定需要过夜离心,以实现特定受体峰与非特异性结合到其他胞质成分的充分分离。这些长时间的运行限制了可进行的测定数量,并可能导致放射性配体从受体上过度解离。因此,我们测试了在垂直管转子(VTR)中进行的简短(2小时)SDG离心测定,作为延长SBR运行的一种可能替代方法。两小时的VTR运行产生的梯度图谱与在SBR中16小时运行获得的图谱非常相似,并且在任一转子中测定的芳烃受体的计算沉降系数(在低离子强度缓冲液中)约为9.6 S。通过VTR分析,C57BL/6J小鼠肝脏、肺、肾脏和睾丸胞质溶胶中芳烃受体的浓度与通过SBR分析测量时相同。因此,即使运行时间长达16小时,[3H]TCDD从芳烃受体上的广泛解离似乎也不会在来自各种组织的胞质溶胶中发生。通过快速VTR离心进行的测定似乎与通过过夜SBR离心获得的测定同样有效。