DEVELOPMENT AND CHARACTERIZATION OF MONOCLONAL-ANTIBODIES TO A SPECIFIC DOMAIN OF HUMAN ESTROGEN-RECEPTOR

被引:42
作者
TRAISH, AM
ETTINGER, R
KIM, N
MARSHAKROTHSTEIN, A
WOTIZ, HH
机构
[1] Department of Biochemistry Boston, MA
[2] Department of Microbiology, Boston University School of Medicine, Boston, MA
关键词
estrogen receptor; monoclonal antibodies; steroids;
D O I
10.1016/0039-128X(90)90017-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have synthesized three peptides with amino acid sequences identical to those spanning amino acids 201-215, 231-245, and 247-261 of the human estrogen receptor (hER). These peptides were conjugated to keyhole limpet hemocyanin and used as immunogens to develop monoclonal antibodies (MoAbs) to hER. Antibody responses were only elicited by the peptide with amino acid sequence 247-261. Splenocytes from immunized mice were used for hybridoma production. Of the seven MoAbs that recognized the native (functional) form of the ER, four (MoAbs 16, 33, 114, and 213) recognized the ER with high affinity, as demonstrated by the increased sedimentation coefficient of the antibody-complexed ER in sucrose density gradients. Antibodies 318, 35, and 36 bound to ER with low affinity since they immunoprecipitated ER, but the ER-antibody complex appeared to dissociate on sucrose density gradients. The high-affinity MoAbs appear to be site-specific since the peptide competed effectively for binding of the receptor by the antibody. The fact that they reacted with ER from human breast cancer and calf, rat, and mouse uterine tissues suggests that this epitope of the receptor is conserved in these species. Although the DNA-binding region appears to be conserved among the various steroid receptors, these MoAbs did not recognize the native forms of progesterone, androgen, or glucocorticoid receptors. These MoAbs bound to the KCl-activated 4S ER and heat-transformed 5S ER, suggesting that the antibody-binding site is accessible in the monomeric and dimeric forms of ER. The antibodies did not recognize the untransformed 8S ER in the presence of molybdate and without KCl, suggesting that the antibody-binding site in the oligomeric form of ER is inaccessible. The fact that the antibodies did bind to the unoccupied 4S ER was demonstrated by the data obtained with sucrose density gradient analysis followed by postlabeling of ER with [3H]estradiol. The antibodies bound to ERs with high affinity (KD = 0.4 to 1.8 nM). At a fixed concentration of antibody, ERs ranging from 20 to 1.000 fmol were detectable. These MoAbs did not inhibit nuclear or DNA binding of ER in vitro. This can be attributed to the dissociation of the antibodies from ER when the latter interacts with its acceptor site. These results demonstrate the development of site-specific MoAbs to the native form of the hER using synthetic peptides as immunogens. (Steroids 55:196-208, 1990). © 1990.
引用
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页码:196 / 208
页数:13
相关论文
共 35 条
[1]  
Evans, The steroid and thyroid hormone receptor superfamily, Science, 240, pp. 889-894, (1988)
[2]  
Muller, Traish, The role of lysyi, arginyl and sulfhydryl residues in estrogen receptor activation, 4S to 5S dimerization, and conversion of receptors from a state with low affinity into a state with higher affinity for estrogen, Ann NY Acad Sci, 464, pp. 202-217, (1986)
[3]  
Grody, Schrader, O'Malley, Activation, transformation and subunit structure of steroid hormone receptors, Endocr Rev, 3, pp. 141-163, (1982)
[4]  
Bailly, LeFevre, Savouret, Milgrom, Activation and changes in sedimentation properties of steroid receptors, J Biol Chem, 255, pp. 2729-2734, (1980)
[5]  
DiSorbo, Phelps, Litwack, Probes of basic amino acid residues affect active sites of the glucocorticoid receptor, Endocrinology, 106, pp. 922-929, (1980)
[6]  
Green, Walter, Kumar, Krust, Bonnert, Argos, Chambon, Human estrogen receptor cDNA sequence, expression and homology to verb A, Nature, 320, pp. 134-139, (1986)
[7]  
Greene, Gilna, Waterfield, Baker, Hort, Shine, Sequence and expression of human estrogen receptor complementary DNA, Science, 231, pp. 1150-1154, (1986)
[8]  
Hollenberg, Weinberger, Ong, Cerelli, Oro, Lebo, Thompson, Rosenfeld, Evans, Primary structure and expression of a functional human glucocorticoid receptor cDNA, Nature, 318, pp. 635-641, (1985)
[9]  
Arriza, Weinberger, Cerelli, Glaser, Handelin, Housman, Evans, Cloning of human mineralocorticoid receptor complementary DNA: structural and functional kinship with the glucocorticoid receptor, Science, 237, pp. 268-275, (1987)
[10]  
Misrashi, Atger, d'Auriol, Loosfelt, Meriel, Fridlansky, Guiochon-Mantel, Galibert, Milgrom, Complete amino acid sequence of the human progesterone receptor deduced from cloned cDNA, Biochemical and Biophysical Research Communications, 143, pp. 740-748, (1987)