Feil P D, Bardin C W
Endocrinology. 1975 Dec;97(6):1398-407. doi: 10.1210/endo-97-6-1398.
Although progesterone receptors have been studied in the uterine cytoplasm of many species, relatively little was known about the nuclear content of these binding proteins. In the present study, a nuclear progesterone receptor was deteced in the guinea pig uterus. The binding of progesterone to the nuclear receptor was hormone and tissue specific. Furthermore, the nuclear localization of the progesterone receptor complex in the uterus was both time and temperature dependent. Since the nuclear receptor was extracted in high salt buffer, the effects of KCl on several physical properties of the cytoplasmic and nuclear binders were studied. In the presence of high salt, cytosol and nuclear receptors were virtually indistinguishable. These proteins were clearly distinguished upon removal of the KCl by rapid dialysis: the nuclear receptor had a slower sedimentation rate, a faster rate of dissociation and a higher binding affinity than did the cytosol receptor for progesterone. We conclude that the cytosol and nuclear receptors for progesterone in the guinea pig uterus are distinct macromolecules. These observations are consistent with the postulate that the cytoplasmic receptor is a precursor of that in the nucleus.
尽管在许多物种的子宫细胞质中已对孕酮受体进行了研究,但对于这些结合蛋白的核含量却知之甚少。在本研究中,在豚鼠子宫中检测到了一种核孕酮受体。孕酮与核受体的结合具有激素和组织特异性。此外,子宫中孕酮受体复合物的核定位既依赖时间也依赖温度。由于核受体是在高盐缓冲液中提取的,因此研究了氯化钾对细胞质和细胞核结合蛋白几种物理性质的影响。在高盐存在的情况下,胞质溶胶和核受体几乎无法区分。通过快速透析去除氯化钾后,这些蛋白质明显区分开来:与胞质溶胶受体相比,核受体的沉降速率较慢、解离速率较快且对孕酮的结合亲和力较高。我们得出结论,豚鼠子宫中孕酮的胞质溶胶受体和核受体是不同的大分子。这些观察结果与细胞质受体是细胞核中受体的前体这一假设一致。