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. 2010 Feb 25;53(4):1871-5.
doi: 10.1021/jm9018349.

Engineering galanin analogues that discriminate between GalR1 and GalR2 receptor subtypes and exhibit anticonvulsant activity following systemic delivery

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Engineering galanin analogues that discriminate between GalR1 and GalR2 receptor subtypes and exhibit anticonvulsant activity following systemic delivery

Charles R Robertson et al. J Med Chem. .

Abstract

Galanin modulates seizures in the brain through two galanin receptor subtypes, GalR1 and GalR2. To generate systemically active galanin receptor ligands that discriminate between GalR1 and GalR2, the GalR1-preferring analogue Gal-B2 (or NAX 5055) was rationally redesigned to yield GalR2-preferring analogues. Systematic truncations of the N-terminal backbone led to [N-Me,des-Sar]Gal-B2, containing N-methyltryptophan. This analogue exhibited 18-fold preference in binding toward GalR2, maintained agonist activity, and exhibited potent anticonvulsant activity in mice following intraperitoneal administration.

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Figures

Figure 1
Figure 1
Structures of the N-terminus and GalR2/GalR1 receptor preference for galanin analogues. Analogues generated using the backbone “atom shaving” technique. All Analogues maintain the Gal(2-13) pharmacophore and have the C-terminal KK(Lys-palmitoyl)K motif [R = TLNSAGYLLGPKK(Lys-palmitoyl)K-conh2].
Figure 2
Figure 2
Representative binding curves for Analogues Gal-B2 (triangles) and [N-Me, des-Sar]Gal-B2 (circles) against hGalR1 (left) and hGalR2 (right). Each binding assay was performed in triplicate to generate one 10-point binding curve. Binding affinities are reported as the average of three independent binding curves. Binding affinities (KI) for Gal-B2 are 3.5 nM hGalR1 and 52 nM hGalR2 and for [N-Me, des-Sar]Gal-B2 are 364 nM hGalR1 and 20 nM hGalR2.
Figure 3
Figure 3
(A) Agonist activity of Analogues determined by calcium mobilization assay (Millipore). The % response is normalized to galanin receptor agonists, Gal(1-30) for hGalR1 and Gal(2-29) for hGalR2. At 1.25 μM ligand concentration, Analogue [N-Me, des-Sar]Gal-B2 preferentially activates hGalR2 over hGalR1, to 83% ± 3.8% and 26% ± 1.9% respectively (n = 4, p < 0.01). (B) The dose response curve for Analogue [N-Me, des-Sar]Gal-B2; CF-1 mice (n = 8) were treated with the Analogue and challenged by with 6 Hz (32 mA) corneal stimulation 1 hour after i.p. administration.% animals protected is (#mice protected/#mice tested)*100.

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