High-Level Expression of a Functional Single-Chain Human Chorionic Gonadotropin-Luteinizing Hormone Receptor Ectodomain Complex in Insect Cells1
Reproductive capacity in primates is dependent on the high-affinity binding of the glycoprotein hormones LH and human (h)CG to the large ectodomain (ECD) of their common receptor (LHR). Our understanding of the precise molecular determinants of hormone binding is limited, because there are no struct...
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Veröffentlicht in: | Endocrinology (Philadelphia) 2001-04, Vol.142 (4), p.1517-1524 |
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Sprache: | eng |
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Zusammenfassung: | Reproductive capacity in primates is dependent on the high-affinity
binding of the glycoprotein hormones LH and human (h)CG to the large
ectodomain (ECD) of their common receptor (LHR). Our understanding of
the precise molecular determinants of hormone binding is limited,
because there are no structural data for any of the glycoprotein
hormone receptors. Overexpression of the ECD of the receptor has been
attempted in various expression systems. Prokaryotic expression does
not yield properly folded ECD. Eukaryotic expression, on the other
hand, results in mostly heterogeneous, intracellularly trapped protein,
but the secreted ECD is completely folded. Accordingly, we have
tethered the single-chain hormone, yoked hCG, to the N terminus of
LHR-ECD (yoked hormone-extracellular domain). Yoked
hCG is secreted at high levels; binds LHR with high affinity; and, when
tethered to the N terminus of full-length LHR, it binds and
constitutively activates the receptor. Using recombinant baculovirus,
yoked hormone-extracellular domain is secreted from insect cells at
levels greater than 1 μg/ml, nearly 20-fold higher than that
previously reported in eukaryotic expression systems. The protein was
purified and binds exogenous 125I-hCG with high affinity
but, significantly, only after protease treatment to remove the
tethered hormone. Thus, the fusion protein seems to form a functional
hormone-receptor complex that is expressed at levels sufficient for its
biophysical characterization. |
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ISSN: | 0013-7227 1945-7170 |
DOI: | 10.1210/endo.142.4.8074 |