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Allosteric Regulation of the Follicle-Stimulating Hormone Receptor
Author(s) -
Selvaraj Nataraja,
Venkataraman Sriraman,
Stephen Palmer
Publication year - 2018
Publication title -
endocrinology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.674
H-Index - 257
eISSN - 1945-7170
pISSN - 0013-7227
DOI - 10.1210/en.2018-00317
Subject(s) - follicle stimulating hormone receptor , allosteric regulation , thyrotropin receptor , receptor , signal transduction , microbiology and biotechnology , biology , hormone receptor , thyrotropin releasing hormone receptor , g protein coupled receptor , endocrinology , follicle stimulating hormone , medicine , luteinizing hormone , hormone , biochemistry , genetics , thyroid , cancer , graves' disease , breast cancer
Follicle-stimulating hormone receptor (FSHR) belongs to the leucine-rich repeat family of the G protein–coupled receptor (LGR), which includes the glycoprotein hormone receptors luteinizing hormone receptor, thyrotropin receptor, and other LGRs 4, 5, 6, and 7. FSH is the key regulator of folliculogenesis in females and spermatogenesis in males. FSH elicits its physiological response through its cognate receptor on the cell surface. Binding of the hormone FSH to its receptor FSHR brings about conformational changes in the receptor that are transduced through the transmembrane domain to the intracellular region, where the downstream effector interaction takes place, leading to activation of the downstream signaling cascade. Identification of small molecules that could activate or antagonize FSHR provided interesting tools to study the signal transduction mechanism of the receptor. However, because of the nature of the ligand-receptor interaction of FSH-FSHR, which contains multiple sites in the extracellular binding domain, most of the small-molecule modulators of FSHR are unable to bind to the orthosteric site of the receptors. Rather they modulate receptor activation through allosteric sites in the transmembrane region. This review will discuss allosteric modulation of FSHR primarily through the discovery of small-molecule modulators, focusing on current data on the status of development and the utility of these as tools to better understand signaling mechanisms.

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