TY - JOUR
T1 - Recombinant prolactin receptor extracellular domain of rainbow trout (Oncorhynchus mykiss)
T2 - Subcloning, preparation, and characterization
AU - Sandowski, Y.
AU - Cohen, Y.
AU - Le Rouzic, P.
AU - Bignon, Ch
AU - Rentier-Delrue, F.
AU - Djiane, J.
AU - Prunet, P.
AU - Gertler, A.
PY - 2000/5
Y1 - 2000/5
N2 - The cDNA of the extracellular domain of rainbow trout (Oncorhynchus mykiss) prolactin receptor (trPRLR-ECD) was cloned in the prokaryotic expression vector pMON to enable its expression in Escherichia coli after induction with nalidixic acid. The bacterially expressed trPRLRECD protein, contained within the refractile body pellet, was solubilized in 4.5 M urea, refolded, and purified on a Q-Sepharose column, pH 8, by stepwise elution with NaC1. The bioactive monomeric 26-kDa fraction was eluted in 0.2 M NaC1, yielding 20 mg/2.5 L of induced culture. The purified protein was over 98% homogeneous, as shown by SDS- PAGE in the presence or absence of reducing agent and by chromatography on a Superdex column. Binding experiments using [125I]ovine placental lactogen (oPL) as a ligand revealed that human growth hormone (hGH), oPL, and ovine prolactin (oPRL) were the most effective competitors, with respective IC50 values of 1.32, 2.27, and 2.70 nM. Chicken (ch) PRL did not compete at all, and homologous trPRL was much less effective, with a corresponding IC50 value of 1826 nM. Gel-filtration was used to determine the stoichiometry of trPRLR-ECD's interaction with oPL, hGH, and oPRL. Only oPL yielded a 2:1 complex, whereas hGH and oPRL formed only 1:1 complexes, with excess trPRLR-ECD being seen at the initial 2:1 trPRLR-ECD:hGH or trPRLRECD:oPRL ratios. No studies were performed with chPRL because of its inability to compete with [125I]oPL or with trPRL because of its low affinity toward trPRLRECD. The present results agree with previous findings indicating, as in mammals, that homologous PRL interacts transiently with its receptor and suggest that transient homologous PRL-induced homodimerization of the receptor is sufficient to initiate a biological signal, despite the fact that, in classical binding experiments, only low specific binding can be detected. (C) 2000 Academic Press.
AB - The cDNA of the extracellular domain of rainbow trout (Oncorhynchus mykiss) prolactin receptor (trPRLR-ECD) was cloned in the prokaryotic expression vector pMON to enable its expression in Escherichia coli after induction with nalidixic acid. The bacterially expressed trPRLRECD protein, contained within the refractile body pellet, was solubilized in 4.5 M urea, refolded, and purified on a Q-Sepharose column, pH 8, by stepwise elution with NaC1. The bioactive monomeric 26-kDa fraction was eluted in 0.2 M NaC1, yielding 20 mg/2.5 L of induced culture. The purified protein was over 98% homogeneous, as shown by SDS- PAGE in the presence or absence of reducing agent and by chromatography on a Superdex column. Binding experiments using [125I]ovine placental lactogen (oPL) as a ligand revealed that human growth hormone (hGH), oPL, and ovine prolactin (oPRL) were the most effective competitors, with respective IC50 values of 1.32, 2.27, and 2.70 nM. Chicken (ch) PRL did not compete at all, and homologous trPRL was much less effective, with a corresponding IC50 value of 1826 nM. Gel-filtration was used to determine the stoichiometry of trPRLR-ECD's interaction with oPL, hGH, and oPRL. Only oPL yielded a 2:1 complex, whereas hGH and oPRL formed only 1:1 complexes, with excess trPRLR-ECD being seen at the initial 2:1 trPRLR-ECD:hGH or trPRLRECD:oPRL ratios. No studies were performed with chPRL because of its inability to compete with [125I]oPL or with trPRL because of its low affinity toward trPRLRECD. The present results agree with previous findings indicating, as in mammals, that homologous PRL interacts transiently with its receptor and suggest that transient homologous PRL-induced homodimerization of the receptor is sufficient to initiate a biological signal, despite the fact that, in classical binding experiments, only low specific binding can be detected. (C) 2000 Academic Press.
KW - Extracellular domain
KW - Prolactin
KW - Receptor
KW - Trout
UR - http://www.scopus.com/inward/record.url?scp=0033929206&partnerID=8YFLogxK
U2 - 10.1006/gcen.2000.7465
DO - 10.1006/gcen.2000.7465
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C2 - 10890569
AN - SCOPUS:0033929206
SN - 0016-6480
VL - 118
SP - 302
EP - 309
JO - General and Comparative Endocrinology
JF - General and Comparative Endocrinology
IS - 2
ER -