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K Kask

Publications and source records attributed to K Kask.

22 records · Page 2Linked to original sources

Analogs of galanin (1-16) modified in positions 1-3 as ligands to rat hypothalamic galanin receptors.

Structure-activity relationship (SAR) studies have revealed that the first three residues of galanin (Gly1-Trp2-Thr3) are of critical importance for high-affinity binding to the galanin receptor. Furthermore degradation studies have shown that galanin is easily cleaved to yield inactive fragments in rat hypothalamus (t1/2 = 100 min). To obtain galanin receptor ligands with long-lasting biological activity the amino-terminus of galanin must be protected. We have therefore synthesized analogs of rat galanin(1-16) carrying modifications at the three amino-termini of galanin. All modifications of the peptide backbone flanking Trp2 as in the analogs [N-Me-Trp2]-galanin(1-16), [Tcc2]-galanin-(1-16), (Trp2-psi[CH2NH]-Thr3)-galanin-(1-16) produced a dramatic loss of affinity toward the galanin receptor. [N-Me-Thr3]-galanin(1-16) was the most active of the peptide backbone modified analogs (KD = 997 +/- 1 nM). Modifications of the indole ring in Trp2 ([For-Trp2]-galanin-(1-16), [Tcc2]-galanin-(1-16)) yielded analogs which, at concentrations up to 10 microM, did not displace [125I]galanin binding. N-Methylation of Gly1 by the introduction of sarcosine ([Sar1]-galanin(1-16)) did not significantly affect the ligand-binding properties of galanin(1-16) (KD = 8.7 +/- 0.1 nM).

Amino Acid Sequence↗

Evidence for a role of the neuropeptide galanin in spatial learning.

The neuropeptide galanin coexists with acetylcholine (ACh) in the basal forebrain cholinergic neurons and modulates cholinergic activity in the forebrain. The cholinergic forebrain neurons appear to play a significant role in learning and memory, as suggested by a severe loss of these neurons in Alzheimer's disease. The involvement of endogenous galanin in learning is demonstrated here by the use of the recently synthesized high-affinity galanin antagonist M35 [galanin(1-13)-bradykinin(2-9) amide] (Kd = 0.1 nM). Intracerebroventricular (i.c.v.) administration of M35 (6 but not 3 nmol) produced a significant (P < 0.025) facilitation of acquisition in a spatial learning test (Morris swim maze) without any increase in swim speed. Thus, M35 (6 nmol) shortened the escape latency, reduced the number of failures to reach the platform, and shortened the path length to reach the hidden platform. M35 (3 and 6 nmol) tended to enhance retention performance seven days after the last training session. Receptor autoradiographic studies on the distribution of [125I]M35 following i.c.v. administration show that it binds preferentially in the periventricular regions including the hippocampus. These results suggest that galanin may modulate spatial learning and memory and that galanin antagonists may provide a new principle in the treatment of Alzheimer's disease.

Amino Acid Sequence↗