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Open AccessJournal ArticleDOI

Palmitoylation regulates 17β-estradiol-induced estrogen receptor-α degradation and transcriptional activity.

TLDR
It is proposed that rapid E2-dependent signaling could be considered as a prerequisite for ERα transcriptional activity and suggested an integrated model of ERα intracellular signaling where E1-dependent early extranuclear effects control late receptor-dependent nuclear actions.
Abstract
The estrogen receptor-α (ERα) is a transcription factor that regulates gene expression through the binding to its cognate hormone 17β-estradiol (E2). ERα transcriptional activity is regulated by E2-evoked 26S proteasome-mediated ERα degradation and ERα serine (S) residue 118 phosphorylation. Furthermore, ERα mediates fast cell responses to E2 through the activation of signaling cascades such as the MAPK/ERK and phosphoinositide-3-kinase/v-akt murine thymoma viral oncogene homolog 1 pathways. These E2 rapid effects require a population of the ERα located at the cell plasma membrane through palmitoylation, a dynamic enzymatic modification mediated by palmitoyl-acyl-transferases. However, whether membrane-initiated and transcriptional ERα activities integrate in a unique picture or represent parallel pathways still remains to be firmly clarified. Hence, we evaluated here the impact of ERα palmitoylation on E2-induced ERα degradation and S118 phosphorylation. The lack of palmitoylation renders ERα more susceptible to E2-dependent degradation, blocks ERα S118 phosphorylation and prevents E2-induced ERα estrogen-responsive element-containing promoter occupancy. Consequently, ERα transcriptional activity is prevented and the receptor addressed to the nuclear matrix subnuclear compartment. These data uncover a circuitry in which receptor palmitoylation links E2-dependent ERα degradation, S118 phosphorylation, and transcriptional activity in a unique molecular mechanism. We propose that rapid E2-dependent signaling could be considered as a prerequisite for ERα transcriptional activity and suggest an integrated model of ERα intracellular signaling where E2-dependent early extranuclear effects control late receptor-dependent nuclear actions.

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Journal ArticleDOI

Estrogen receptors regulate innate immune cells and signaling pathways.

TL;DR: Reviewing the recent literature and highlighting several molecular mechanisms by which ERs regulate the development or functional responses of innate immune cells may contribute to the reported sex differences in innate immune pathways.
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Molecular Mechanisms of Action of BPA.

TL;DR: Taking into account that the incidence and/or prevalence of health problems associated with endocrine disruption have increased worldwide, the goal of the present review is to give an overview of the many mechanisms of BPA action in order to decipher whether different mechanisms are at the root of the effect of low dose of B PA on endocrine system.
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The Physiology of Protein S-acylation

TL;DR: This review introduces key features of S-acylation and tools to interrogate this process, and highlights the eclectic array of proteins regulated including membrane receptors, ion channels and transporters, enzymes and kinases, signaling adapters and chaperones, cell adhesion, and structural proteins.
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Protein Lipidation: Occurrence, Mechanisms, Biological Functions, and Enabling Technologies.

TL;DR: This work provides a comprehensive review of protein lipidation, including descriptions of proteins known to be modified and the functions of the modifications, the enzymes that control them, and the tools and technologies developed to study them.
References
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Journal ArticleDOI

Estrogen Receptor-α Directs Ordered, Cyclical, and Combinatorial Recruitment of Cofactors on a Natural Target Promoter

TL;DR: A comprehensive picture of events resulting in transcriptional activation of a gene is provided, through evaluating the estrogen receptor-alpha (NR3A1) target pS2 gene promoter in MCF-7 cells, which implies that transcriptionalactivation is a cyclical process that requires both activating and repressive epigenetic processes.
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Cyclic, Proteasome-Mediated Turnover of Unliganded and Liganded ERα on Responsive Promoters Is an Integral Feature of Estrogen Signaling

TL;DR: It is demonstrated that proteasome-mediated degradation and hER alpha-mediated transactivation are inherently linked and act to continuously turn over hERalpha on responsive promoters.
Journal ArticleDOI

Nature of Functional Estrogen Receptors at the Plasma Membrane

TL;DR: This work isolated subcellular receptor pools from MCF7 cells and identified membrane and nuclear E2-binding proteins as classical human ERalpha, and determined whether GPR30 plays any role in E2 rapid actions.
Journal ArticleDOI

Estrogen receptor phosphorylation

TL;DR: This review presents evidence that these phosphorylations occur, and identifies the kinases thought to be responsible, and the functional importance of ERalpha phosphorylation is discussed.
Journal ArticleDOI

Extranuclear steroid receptors: nature and actions.

TL;DR: Although great strides have been made, much remains to be understood concerning the integration of extranuclear and nuclear receptor functions to organ biology, and significant progress is highlighted in these areas.
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