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GR 73632

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GR 73632 is a potent and selective tachykinin NK1 receptor agonist (EC50 = 2 nM in guinea pig vas deferens). GR 73632 is able to be used in the treatment of asthma and gastrointestinal disorders.

Category
Peptide Inhibitors
Catalog number
BAT-014242
CAS number
133156-06-6
Molecular Formula
C40H59N7O6S
Molecular Weight
766.01
GR 73632
IUPAC Name
(2S)-N-[(2S)-1-[[(2S)-1-amino-4-methylsulfanyl-1-oxobutan-2-yl]amino]-4-methyl-1-oxopentan-2-yl]-1-[(2S)-2-[[(2S)-2-(5-aminopentanoylamino)-3-phenylpropanoyl]amino]-3-phenylpropanoyl]-N-methylpyrrolidine-2-carboxamide
Synonyms
GR-73632; GR 73632; GR73632. Delta-Aminovaleryl-9-pro-10-meleu-substance P (7-10); Substance P (7-10), delta-aminovaleryl-pro(9)-N-meleu(10)-; Substance P (7-10), delta-aminovaleryl-prolyl(9)-N-methylleucine(10)-
Sequence
XFFPLM
InChI
InChI=1S/C40H59N7O6S/c1-27(2)24-34(38(51)44-30(36(42)49)20-23-54-4)46(3)40(53)33-18-13-22-47(33)39(52)32(26-29-16-9-6-10-17-29)45-37(50)31(25-28-14-7-5-8-15-28)43-35(48)19-11-12-21-41/h5-10,14-17,27,30-34H,11-13,18-26,41H2,1-4H3,(H2,42,49)(H,43,48)(H,44,51)(H,45,50)/t30-,31-,32-,33-,34-/m0/s1
InChI Key
HQKPTSSZOJLFBZ-LJADHVKFSA-N
Canonical SMILES
CC(C)CC(C(=O)NC(CCSC)C(=O)N)N(C)C(=O)C1CCCN1C(=O)C(CC2=CC=CC=C2)NC(=O)C(CC3=CC=CC=C3)NC(=O)CCCCN
1.Utilization of the least shrew as a rapid and selective screening model for the antiemetic potential and brain penetration of substance P and NK1 receptor antagonists.
Darmani NA;Wang Y;Abad J;Ray AP;Thrush GR;Ramirez J Brain Res. 2008 Jun 12;1214:58-72. doi: 10.1016/j.brainres.2008.03.077. Epub 2008 Apr 9.
Substance P (SP) is thought to play a cardinal role in emesis via the activation of central tachykinin NK1 receptors during the delayed phase of vomiting produced by chemotherapeutics. Although the existing supportive evidence is significant, due to lack of an appropriate animal model, the evidence is indirect. As yet, no study has confirmed that emesis produced by SP or a selective NK1 receptor agonist is sensitive to brain penetrating antagonists of either NK1, NK2, or NK3 receptors. The goals of this investigation were to demonstrate: 1) whether intraperitoneal (i.p.) administration of either SP, a brain penetrating (GR73632) or non-penetrating (e.g. SarMet-SP) NK1 receptor agonist, an NK2 receptor agonist (GR64349), or an NK3 receptor agonist (Pro7-NKB), would induce vomiting and/or scratching in the least shrew (Cryptotis parva) in a dose-dependent manner; and whether these effects are sensitive to the above selective receptor antagonists; 2) whether an exogenous emetic dose of SP (50 mg/kg, i.p.) can penetrate into the shrew brain stem and frontal cortex; 3) whether GR73632 (2.5 mg/kg, i.p.)-induced activation of NK1 receptors increases Fos-measured neuronal activity in the neurons of both brain stem emetic nuclei and the enteric nervous system of the gut; and 4) whether selective ablation of peripheral NK1 receptors can affect emesis produced by GR73632.
2.Centrally administered hemokinin-1 (HK-1), a neurokinin NK1 receptor agonist, produces substance P-like behavioral effects in mice and gerbils.
Duffy RA;Hedrick JA;Randolph G;Morgan CA;Cohen-Williams ME;Vassileva G;Lachowicz JE;Laverty M;Maguire M;Shan LS;Gustafson E;Varty GB Neuropharmacology. 2003 Aug;45(2):242-50.
Hemokinin-1 (HK-1) is a recently described mouse tachykinin peptide whose biological functions are not fully understood. To date, a unique receptor for HK-1 has not been identified. Recent studies suggest HK-1 may have a role in immunological functions, but there has been little characterization of HK-1's effects in the central nervous system (CNS). In the present studies, we confirm that HK-1 is an endogenous agonist at all of the known tachykinin receptors, and is selective for the NK1 receptor over the NK2 and NK3 subtypes. CHO cells transfected with the human NK1 receptor released intracellular calcium in response to HK-1. In addition, HK-1 competed with substance P (SP) for binding to mouse NK1 and human NK1 receptors. In vivo central administration of HK-1 to gerbils and mice induced foot-tapping and scratching behaviors, respectively, similar to those observed following central administration of SP or the NK1 receptor agonist, GR-73632. Furthermore, these behavioral effects were blocked by the selective NK1 receptor antagonist, MK-869. Finally, a comprehensive expression analysis of HK-1 demonstrated that HK-1 mRNA is much more broadly expressed than previously reported with expression observed in many brain regions.
3.Spinal actions of GR73632, a novel tachykinin NK1 receptor agonist.
Sakurada C;Watanabe C;Inoue M;Tan-No K;Ando R;Kisara K;Sakurada T Peptides. 1999;20(2):301-4.
Behavioral characterization of GR73632, a newly synthesized tachykinin NK1 receptor agonist, was examined in mice. Intrathecal (IT) injection of GR73632 in the spinal subarachnoid space of mice elicited a dose-dependent behavioral syndrome, consisting of scratching, biting and licking. The time course of the response to GR73632 was almost similar to that of substance P. GR73632 evoked much more licking and biting than did substance P, that in turn caused less scratching. GR73632 was approximately 200-fold more potent than substance P in inducing the characteristic behavioral response. The GR73632-induced behavioral response was inhibited by IT co-administration of CP-96,345, a non-peptide NK1 receptor antagonist, but not its inactive enantiomer CP-96,344. CP-96,345, co-injected IT with substance P, also inhibited the behavioral response to substance P. These results demonstrate that the scratching, biting and licking response induced by IT GR73632 may be mediated by the NK1 receptor in the spinal cord. These findings suggest that GR73632 may be useful as a tachykinin NK1 receptor agonist and also for evaluating spinal pharmacological activities of NK1 receptor antagonists.
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