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  4. Structure-function properties of the chicken progesterone receptor a synthesized from complementary deoxyribonucleic acid
 
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Structure-function properties of the chicken progesterone receptor a synthesized from complementary deoxyribonucleic acid

Journal
Molecular Endocrinology
Journal Volume
1
Journal Issue
11
Pages
791-801
Date Issued
1987
Author(s)
Carson M.A.
MING-JER TSAI  
Conneely O.M.
Maxwell B.L.
Clark J.H.
Dobson A.D.W.
Elbrecht A.
Toft D.O.
Schrader W.T.
O嚙踝蕭Malley B.W.
DOI
10.1210/mend-1-11-791
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/461305
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-0023579760&doi=10.1210%2fmend-1-11-791&partnerID=40&md5=f98fa7bfd12110330b164a76df0e2972
Abstract
The chicken progesterone receptor (PR) cDNA has been cloned and sequenced in our laboratory. Functional receptor A was synthesized from cDNA in two independent systems, by transient transfection of receptor-negative COS M6 cells and by in vitro transcription and translation. These receptors exhibited DNA and hormone binding properties similar to the native PR from oviduct. The ability of receptor to induce target gene transcription was measured by cotransfection of receptor-negative CV-1 cells with expression vectors containing the receptor A cDNA and a progesterone-inducible promotor linked to the chloramphenicol acetyl transferase (CAT) gene. In these assays, receptor A produced hormone-dependent induction of CAT activity. In order to define the functional domains of receptor A, expression constructs coding for C-terminal deletion proteins were prepared. Deletion of the C-terminus resulted in loss of hormone binding activity as well as a loss of CAT induction. However, when 290 amino acids were removed from the C-terminus, this severely truncated receptor protein produced hormone-independent target gene activation. Mutant receptor proteins which retained the highly conserved cysteine-rich (C1) region were able to bind to DNA-cellulose, although removal of 290 amino acids from the C-terminus resulted in reduced affinity for DNA. Deletion of part or all of the C1 region resulted in loss of both DNA-binding and transcriptional activation capacities. These results confirm that C1 functions in DNA binding and transcriptional activation and that hormone binding activity can be localized to the C-terminal half of the protein.
Type
journal article

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