Abstract

Synthetic peptides were used to probe the structure-function relationships between human choriotropin (hCG) and the lutropin (LH) receptor. Previously, a peptide region of the alpha subunit of hCG, residues 26-46, had been shown to inhibit binding of 125I-hCG to the LH receptor in rat ovarian membranes (Charlesworth, M.C., McCormick, D.J., Madden, B., and Ryan, R.J. (1987) J. Biol. Chem. 262, 13409-13416). To determine which residues are important for this inhibitory activity, peptides were truncated from either the amino or carboxyl terminus, or individual residues were substituted with alanine. The amino-terminal boundary was determined to be Gly-30 and the carboxyl-terminal boundary, Lys-44. This core peptide contained all the residues needed for full activity of the parent peptide 26-46. Arg-35 and Phe-33 were particularly important residues; when they were substituted with alanine, the peptide inhibitory potencies were decreased. Ser-43, Arg-42, Cys-32, and Cys-31 were also important but to a lesser degree. These results are consistent with predictions based on chemical and enzymatic modification studies and provide insight into which residues are important for interaction between hCG and the LH receptor.

Highlights

  • We have used synthetic peptides to determine the importance of particular amino acid residues for the inhibitory activity of a26-46, a peptide that inhibits binding of lzSII-hCGto rat ovarian membranes (Charlesworth et al, 1987).Our data suggest that thecore sequence 30-44 contains all the residues necessary for full inhibitory activity

  • Our data are consistent with the idea that these residues are in or near the receptor interaction region of the a subunit

  • The carboxyl-terminal boundary appears to be Lys-44; Lys45 and Thr-46 can be deleted with little effect on inhibitory activity

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Summary

Introduction

Peptide were substituted with alanine at residues 29-35. 44 is important for maintaininginhibitoryactivity of the appear to be less important, since the alanine substitutions peptide. The for the inhibitory activity of region 26-46 were contained in second set of peptides was substituted at residues 37-44 in the core sequence 30-44, theamino-terminalboundaryat the sequence 29-44.

Results
Conclusion
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