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核糖核酸酶对雌激素受体理化性质的影响。

Effect of ribonuclease on the physico-chemical properties of estrogen receptor.

作者信息

Thomas T, Kiang D T

出版信息

J Steroid Biochem. 1985 Jul;23(1):19-25. doi: 10.1016/0022-4731(85)90255-9.

Abstract

Estrogen receptors (ER) from rat and rabbit uterine cytosol were examined for their sensitivity to ribonuclease (RNase). After RNase treatment, a major part of rabbit uterine ER was converted from the 7S to 3-4S form, and its binding to DNA-cellulose was increased by 40%. Similar treatment on rat uterine ER showed a shift from 7S to 4.5S, and the DNA-cellulose binding was stimulated by 20%. Measurement of endogenous RNase levels showed that lower RNase concentration in rabbit uterine cytosol coincided with larger stimulation of DNA-cellulose binding by exogenous RNase. These results indicate that a major part of 7S ER is susceptible to RNase, and cleavage of bound RNA seems to uncover additional binding sites for DNA. In contrast to the general thinking that 4S to 5S transformation is essential for nuclear binding, we have observed that RNase-treated rat uterine ER did not undergo such a transformation by warming at 25 degrees C, while DNA-cellulose binding of the receptors increased. Thus, temperature activation could occur independent of 4S to 5S transformation.

摘要

对来自大鼠和兔子宫胞质溶胶的雌激素受体(ER)进行了核糖核酸酶(RNase)敏感性检测。RNase处理后,兔子宫ER的大部分从7S形式转变为3 - 4S形式,其与DNA纤维素的结合增加了40%。对大鼠子宫ER进行类似处理后显示从7S转变为4.5S,且DNA纤维素结合受到20%的刺激。内源性RNase水平的测定表明,兔子宫胞质溶胶中较低的RNase浓度与外源性RNase对DNA纤维素结合的较大刺激相吻合。这些结果表明,7S ER的大部分对RNase敏感,结合的RNA的切割似乎揭示了额外的DNA结合位点。与通常认为的4S到5S转变对核结合至关重要的观点相反,我们观察到RNase处理过的大鼠子宫ER在25℃加热时并未发生这种转变,而受体与DNA纤维素的结合却增加了。因此,温度激活可以独立于4S到5S转变而发生。

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