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JBC, Vol. 250, Issue 16, 6452-6459, Aug, 1975
G. A. Puca, E. Nola, U. Hibner, G. Cicala and V. Sica
The specific interaction between 17 beta-estradiol-receptor complex and
nuclear acceptors was analyzed by immobilizing various nuclear proteins to
CNBr-activated agarose. The specific, high affinity sites identified in a
fraction of basic proteins that can be solubilized from purified nuclei of
calf uterus (Puca, G.A., Sica, V., and Nola. E (1974) Proc. Natl. Acad.
Sci. U.S.A. 71, 979-983) were chromatographed on Sephadex G-100 columns.
Elution of the acceptor activity depends on the pH and ionic strength of
the buffer used. With 5 mM HCl, however, a peak of acceptor activity with a
molecular weight of about 70,000 was partially dissociated from the other
basic nuclear proteins. The high affinity binding of the receptor to the
acceptor proteins was estradiol-, but not progesterone-, cortisone-, or
testosterone-dependent; it was very sensitive to ionic strength and showed
a physiological pH optimum. Low affinity binding, such as that seen between
receptor and histone, showed no estradiol dependence and little ionic
strength and pH sensitivity. Native or heat-denatured DNA strongly modified
the receptor-acceptor interaction, reducing the number of binding sites of
acceptor for the receptor without changing the high affinity of the
interaction. Heating of the acceptor protein before its covalent linkage to
agarose considerably increased the affinity of the resulting agarose
derivative. Free sulfhydryl groups of the receptor but not of the acceptor
molecule play an important role in the acceptor-receptor interaction. When
receptor and acceptor preparations were incubated in solution, the
resulting complex was included on a Sephadex G-100 column and it eluted
from DEAE-cellulose columns at lower ionic strength than the receptor
alone. Even though not absolutely specific, these two properties allowed
determination of the molecular weight (85,000) of the acceptor protein at
neutral pH and more nearly physiological ionic strength. The apparent KD of
the acceptor-receptor interaction was determined to be 2 x 10(-10) M at O
degrees. Apparently similar, high affinity binding sites for estradiol
receptors are also present in nuclei of other tissues.
Interaction of the estradiol receptor from calf uterus with its nuclear acceptor sites
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