Claims
- 1. A recombinant expression system for production of functional thyroid hormone receptor protein(s), wherein said system comprises host cells containing non-endogenous DNA encoding said thyroid hormone receptor protein(s), wherein said thyroid hormone receptor protein(s) are selected from the group consisting of thyroid hormone receptor alpha and thyroid hormone receptor beta, and wherein the DNA is operably linked to control sequences compatible with said host cells.
- 2. An expression system according to claim 1 wherein the host cells are mammalian.
- 3. An expression system according to claim 2 wherein the host cells are CV-1 cells.
- 4. A method to produce thyroid hormone receptor protein(s), said method comprising culturing the cells of the expression system of claim 1 and recovering the functional recombinant thyroid hormone receptor protein(s) produced thereby.
- 5. A method according to claim 4 wherein the functional recombinant thyroid hormone receptor protein is recovered by disrupting the cells, removing cell debris, and recovering clarified lysate.
- 6. Recombinant thyroid hormone receptor produced by the method of claim 4.
- 7. Recombinant DNA capable of hybridizing with DNA encoding protein having an amino acid sequence selected from the group consisting of the amino acid sequence shown in FIGS. III-1(B)-1,2 (hTR), the amino acid sequence shown in FIGS. III-7(A,B) (hTR), the amino acid sequence shown in FIGS. VII-1(B)a,b (rTR.alpha.), and DNA complementary thereto, under low stringency hybridization conditions, wherein said DNA encodes a naturally occurring functional receptor protein(s) having hormone-binding and/or transcription activating properties of thyroid hormone receptor.
- 8. DNA according to claim 7 selected from DNA capable of hybridizing with DNA encoding protein having an amino acid sequence selected from the group consisting of the amino acid sequence shown in FIGS. III-1(B)-1,2 (hTR), the amino acid sequence shown in FIGS. III-7(A,B) (hTR), the amino acid sequence shown in FIGS. VII-1(B)a,b (rTR.alpha.), and DNA complementary thereto, under high stringency hybridization conditions.
- 9. DNA according to claim 7, wherein said DNA encodes functional receptor protein having hormone-binding and transcription activating properties of thyroid hormone receptor.
- 10. DNA according to claim 9, wherein the nucleotide sequence of said DNA is selected from the group consisting of the nucleotide sequence set forth in FIGS. III-1(B)-1,2 (hTR), the nucleotide sequence set forth in FIGS. III-7(A,B) (hTR), and the nucleotide sequence set forth in FIGS. VII-1(B)a,b (rTR.alpha.).
- 11. DNA according to claim 9 encoding a protein having the amino acid sequence set forth in FIGS. III-1(B)-1,2 (hTR), FIGS. III-7(A,B) (hTR), or FIGS. VII-1(B)a,b (rTR.alpha.).
- 12. Isolated mRNA complementary to DNA of claim 7.
- 13. Cells transformed with DNA of claim 7.
- 14. A nucleic acid probe selected from a thyroid hormone receptor encoding portion of DNA according to claim 7.
- 15. A plasmid selected from peA101 (ATCC No. 67244), rbeA12 (ATCC No. 67281), phERBA 8.7 (ATCC No. 40374), phFA 8 (ATCC No. 40372).
RELATED APPLICATION
This is a divisional application of U.S. Ser. No. 667,602, filed Mar. 7, 1991, now issued U.S. Pat. No. 5,312,732, which is, in turn, a divisional application of U.S. Ser. No. 108,471, filed Oct. 20, 1987, now issued as U.S. Pat. No. 5,071,773, which is, in turn, a continuation-in-part of U.S. Ser. No. 922,585, filed Oct. 24, 1986, now abandoned.
ACKNOWLEDGMENT
This invention was made with government support under a grant from the National Institutes of Health (Grant No. GM 26444).
Non-Patent Literature Citations (4)
Entry |
J. Biol. Chem 260:2515-2526, 25 Feb. 1985, Lubahn et al. Electrophoretic Characterization of Purified Porcine, Murine, Rat, and Human Uterine Estrogen Receptors. |
Eur. J. Biochem. 139:613-617 (1984), Heintz et al Purification of chick nuclear thyroid-hormone-receptor protein. |
P.N.A.S. 82:7889-7893, Dec. 1985, Walter et al Cloning of the human estrogen receptor cDNA. |
Nature 311:626-631, 18 Oct. 1984, Leonard et al. Molecular cloning and expression of cDNAs for the human interleukin-2 receptor. |
Divisions (2)
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Number |
Date |
Country |
Parent |
667602 |
Mar 1991 |
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Parent |
108471 |
Oct 1987 |
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Continuation in Parts (1)
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Number |
Date |
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922585 |
Oct 1986 |
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