Abstract
Kisspeptins, the natural ligands of the G protein-coupled receptor KISS1R, comprise a family of related peptides derived from the proteolytic processing of a common precursor encoded by the KISS1 gene. Among those, Kisspeptin-10 (Kp-10) contains the basic residues to retain full functional activity and exhibits higher receptor affinity and biopotency than longer forms of the peptide. Although kisspeptins were first characterized by their ability to inhibit tumor metastasis, recent studies have revealed that the KISS1/KISS1R system plays an essential role in the neuroendocrine control of the reproductive axis. In this context, development and functional analysis of Kp-10 analogs may help in the search for new agonists and antagonists as valuable tools to manipulate the KISS1/KISS1R system and hence fertility. We report herein functional and structural analyses of a series of Ala-substituted rat kp-10 analogs, involving [Ca2+]i responses in rat kiss1r-transfected Chinese hamster ovary cells, dynamic luteinizing hormone (LH) responses in vivo, and NMR structural studies. In vitro assays revealed that Ala substitutions in positions 6 or 10 of kp-10 resulted in a significant increase in EC50 values (>6.46 × 10-6 M versus 1.54 to 2.6 × 10-8 M for rat and human Kp-10, respectively) and a substantial decrease in the proportion of responsive cells coupled to a marked increase in the time required to reach maximal response. In vivo assays showed that Ala6 substitution diminished and Ala10 substitution eliminated LH secretory responses, whereas coadministration of each analog failed to affect the LH-releasing ability of kp-10. Molecular modeling under NMR restraints revealed that kp-10 exhibits a helicoidal structure between the Asn4 and Tyr10 residues, with mixed α- and 310-helix characteristics. Ala6 substitution induced limited destabilization of the helix around the position of the substitution. Ala10 substitution was found to totally disrupt the helical structure in the C-terminal region of the molecule. Taken together, our results indicate that positions 6 and 10 are critical for kp-10 action at kiss1r and suggest that modifications in these positions could lead to the generation of new kisspeptin agonists and/or antagonists with altered functional and perhaps binding properties. Furthermore, they emphasize the importance of using combined, multidisciplinary approaches, including in vivo studies, to reliably evaluate structure function properties of novel kisspeptin analogs.
Footnotes
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This work was supported by the Junta de Andalucía [Grants BIO-0139, BIO-310, CTS-1705]; Ministerio de Ciencia e Innovación/FEDER [Grants BFU2004-03883, BFU2007-60180/BFI, and BFU2008-00984/BFI]; Instituto de Salud Carlos III - Ministerio de Sanidad y Consumo, Spain [Grant PI042082]; the French National Research Agency [Project FrenchKiSS ANR-07-BLAN-0056-04], the Institut Fédératif de Recherches Multidisciplinaires sur les Peptides 23; the Plate-forme Régionale de Recherche en Imagerie Cellulaire de Haute-Normandie (PRIMACEN); Institut National de la Santé et de la Recherche Médicale U413; and the Région Haute-Normandie.
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ABBREVIATIONS: Kp-10, Kisspeptin-10; CHO, Chinese hamster ovary; TFA, trifluoroacetic acid; RP-HPLC, reversed-phase high-performance liquid chromatography; MALDI-TOF, matrix-assisted laser desorption ionization/time of flight; PCR, polymerase chain reaction; LH, luteinizing hormone; ORX, orchidectomized; TOCSY, total correlation spectroscopy; NOESY, nuclear Overhauser enhancement spectroscopy; NOE, nuclear Overhauser enhancement; AUC, area under the curve; ANOVA, analysis of variance; Fmoc, 9-fluorenylmethoxycarbonyl; rmsd, root mean square deviation.
- Accepted April 23, 2009.
- Received November 30, 2008.
- The American Society for Pharmacology and Experimental Therapeutics
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