Membrane Melatonin Receptors Activated Cell Signaling in Physiology and Disease

Author:

Nikolaev Georgi,Robeva Ralitsa,Konakchieva RossitzaORCID

Abstract

The pineal hormone melatonin has attracted great scientific interest since its discovery in 1958. Despite the enormous number of basic and clinical studies the exact role of melatonin in respect to human physiology remains elusive. In humans, two high-affinity receptors for melatonin, MT1 and MT2, belonging to the family of G protein-coupled receptors (GPCRs) have been cloned and identified. The two receptor types activate Gi proteins and MT2 couples additionally to Gq proteins to modulate intracellular events. The individual effects of MT1 and MT2 receptor activation in a variety of cells are complemented by their ability to form homo- and heterodimers, the functional relevance of which is yet to be confirmed. Recently, several melatonin receptor genetic polymorphisms were discovered and implicated in pathology—for instance in type 2 diabetes, autoimmune disease, and cancer. The circadian patterns of melatonin secretion, its pleiotropic effects depending on cell type and condition, and the already demonstrated cross-talks of melatonin receptors with other signal transduction pathways further contribute to the perplexity of research on the role of the pineal hormone in humans. In this review we try to summarize the current knowledge on the membrane melatonin receptor activated cell signaling in physiology and pathology and their relevance to certain disease conditions including cancer.

Funder

Ministry of Education and Science

Bulgarian Science Fund

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference325 articles.

1. MT1 and MT2 Melatonin Receptors: A Therapeutic Perspective

2. Medical Implications of Melatonin: Receptor-Mediated and Receptor-Independent Actions;Reiter;Adv. Med. Sci.,2007

3. Circadian Pattern of Melatonin MT1 and MT2 Receptor Localization in the Rat Suprachiasmatic Nucleus

4. Melatonin and adjustment to phase shift

5. Melatonin Inhibits Release of Luteinizing Hormone (LH) via Decrease of [Ca2+]I and Cyclic AMP;Vanecek;Physiol. Res.,1998

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