The promiscuous estrogen receptor: evolution of physiological estrogens and response to phytochemicals and endocrine disruptors

Author:

Baker Michael E.ORCID,Lathe RichardORCID

Abstract

ABSTRACTMany actions of estradiol (E2), the principal physiological estrogen in vertebrates, are mediated by estrogen receptor-α (ERα) and ERβ. An important physiological feature of vertebrate ERs is their promiscuous response to several physiological steroids, including estradiol (E2), Δ5-androstenediol, 5α-androstanediol, and 27-hydroxycholesterol. A novel structural characteristic of Δ5-androstenediol, 5α-androstanediol, and 27-hydroxycholesterol is the presence of a C19 methyl group, which precludes the presence of an aromatic A ring with a C3 phenolic group that is a defining property of E2. The structural diversity of these estrogens can explain the response of the ER to synthetic chemicals such as bisphenol A and DDT, which disrupt estrogen physiology in vertebrates, and the estrogenic activity of a variety of plant-derived chemicals such as genistein, coumestrol, and resveratrol. Diversity in the A ring of physiological estrogens also expands potential structures of industrial chemicals that can act as endocrine disruptors. Compared to E2, synthesis of 27-hydroxycholesterol and Δ5-androstenediol is simpler, leading us, based on parsimony, to propose that one or both of these steroids or a related metabolite was a physiological estrogen early in the evolution of the ER, with E2 assuming this role later as the canonical estrogen. In addition to the well-studied role of the ER in reproductive physiology, the ER also is an important transcription factor in non-reproductive tissues such as the cardiovascular system, kidney, bone, and brain. Some of these ER actions in non-reproductive tissues appeared early in vertebrate evolution, long before mammals evolved.

Publisher

Cold Spring Harbor Laboratory

Reference117 articles.

1. G.N. Eick , J.K. Colucci , M.J. Harms , E.A. Ortlund , J.W. Thornton , Evolution of minimal specificity and promiscuity in steroid hormone receptors, PLoS genetics, 8 (2012) e1003072.

2. Steroid and sterol 7-hydroxylation: ancient pathways

3. Steroid signaling: ligand-binding promiscuity;molecular symmetry, and the need for gating, Steroids,2014

4. Origin of the response to adrenal and sex steroids: Roles of promiscuity and co-evolution of enzymes and steroid receptors

5. W.M. Atkins , Biological messiness vs. biological genius: Mechanistic aspects and roles of protein promiscuity, J Steroid Biochem Mol Biol, (2014).

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