1995American Journal of Physiology-Gastrointestinal and Liver PhysiologyRequires access

Somatostatin receptors

Terry Reisine

Open publisher page 19 citations

Abstract

Somatostatin induces its biological actions by activating a family of receptor subtypes. The recent cloning of five somatostatin receptor subtypes has led to the development of subtype-selective agonists. These compounds are revealing distinct functions of the individual receptor subtypes. Mutagenesis studies have revealed domains of several of the receptors involved in specific recognition of somatostatin analogues. Molecular modeling of both of these ligand-binding domains and the constrained somatostatin analogues that they interact with may lead to the development of nonpeptide somatostatin drugs that could be useful in the treatment of tumors and various metabolic, gastrointestinal, and central nervous system disorders.

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What this paper is about

Somatostatin induces its biological actions by activating a family of receptor subtypes. The recent cloning of five somatostatin receptor subtypes has led to the development of subtype-selective agonists. These compounds are revealing distinct functions of the individual receptor subtypes. Mutagenesis studies have revealed domains of several of the receptors involved in specific recognition of somatostatin analogues. Molecular modeling of both of these ligand-binding domains and the constrained somatostatin analogues that they interact with may lead to the development of nonpeptide somatostatin drugs that could be useful in the treatment of tumors and various metabolic, gastrointestinal, and central nervous system disorders.

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OpenAlex reports 19 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Somatostatin induces its biological actions by activating a family of receptor subtypes. The recent cloning of five somatostatin receptor subtypes has led to the development of subtype-selective agonists. These compounds are revealing distinct functions of the individual receptor subtypes. Mutagenesis studies have revealed domains of several of the receptors involved in specific recognition of somatostatin analogues. Molecular modeling of both of these ligand-binding domains and the constrained somatostatin analogues that they interact with may lead to the development of nonpeptide somatostatin drugs that could be useful in the treatment of tumors and various metabolic, gastrointestinal, and central nervous system disorders.

Key concepts: Somatostatin, Somatostatin receptor, Somatostatin receptor 1, Somatostatin receptor 3, Receptor, Somatostatin receptor 2, Biology, Chemistry

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