Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles

There have been numerous reviews written to date on estrogen receptor (ER), focusing on topics such as its role in the etiology of breast cancer, its mode of regulation, its role as a transcriptional activator and how to target it therapeutically, just to name a few. One reason for so much attention...

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Main Authors: Sonia Javan Moghadam, Amanda M Hanks, Khandan Keyomarsi
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2011-01-01
Series:Journal of Carcinogenesis
Subjects:
Online Access:http://www.carcinogenesis.com/article.asp?issn=1477-3163;year=2011;volume=10;issue=1;spage=25;epage=25;aulast=Moghadam
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spelling doaj-c977cb28d4aa41c488dba13b9f3ea5282020-11-24T23:40:13ZengWolters Kluwer Medknow PublicationsJournal of Carcinogenesis1477-31632011-01-01101252510.4103/1477-3163.90440Breaking the cycle: An insight into the role of ERα in eukaryotic cell cyclesSonia Javan MoghadamAmanda M HanksKhandan KeyomarsiThere have been numerous reviews written to date on estrogen receptor (ER), focusing on topics such as its role in the etiology of breast cancer, its mode of regulation, its role as a transcriptional activator and how to target it therapeutically, just to name a few. One reason for so much attention on this nuclear receptor is that it acts not only as a prognostic marker, but also as a target for therapy. However, a relatively undiscovered area in the literature regarding ER is how its activity in the presence and absence of ligand affects its role in proliferation and cell cycle transition. In this review, we provide a brief overview of ER signaling, ligand dependent and independent, genomic and non-genomic, and how these signaling events affect the role of ER in the mammalian cell cycle.http://www.carcinogenesis.com/article.asp?issn=1477-3163;year=2011;volume=10;issue=1;spage=25;epage=25;aulast=MoghadamCell cycleestradiolestrogen receptors
collection DOAJ
language English
format Article
sources DOAJ
author Sonia Javan Moghadam
Amanda M Hanks
Khandan Keyomarsi
spellingShingle Sonia Javan Moghadam
Amanda M Hanks
Khandan Keyomarsi
Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
Journal of Carcinogenesis
Cell cycle
estradiol
estrogen receptors
author_facet Sonia Javan Moghadam
Amanda M Hanks
Khandan Keyomarsi
author_sort Sonia Javan Moghadam
title Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
title_short Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
title_full Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
title_fullStr Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
title_full_unstemmed Breaking the cycle: An insight into the role of ERα in eukaryotic cell cycles
title_sort breaking the cycle: an insight into the role of erα in eukaryotic cell cycles
publisher Wolters Kluwer Medknow Publications
series Journal of Carcinogenesis
issn 1477-3163
publishDate 2011-01-01
description There have been numerous reviews written to date on estrogen receptor (ER), focusing on topics such as its role in the etiology of breast cancer, its mode of regulation, its role as a transcriptional activator and how to target it therapeutically, just to name a few. One reason for so much attention on this nuclear receptor is that it acts not only as a prognostic marker, but also as a target for therapy. However, a relatively undiscovered area in the literature regarding ER is how its activity in the presence and absence of ligand affects its role in proliferation and cell cycle transition. In this review, we provide a brief overview of ER signaling, ligand dependent and independent, genomic and non-genomic, and how these signaling events affect the role of ER in the mammalian cell cycle.
topic Cell cycle
estradiol
estrogen receptors
url http://www.carcinogenesis.com/article.asp?issn=1477-3163;year=2011;volume=10;issue=1;spage=25;epage=25;aulast=Moghadam
work_keys_str_mv AT soniajavanmoghadam breakingthecycleaninsightintotheroleoferaineukaryoticcellcycles
AT amandamhanks breakingthecycleaninsightintotheroleoferaineukaryoticcellcycles
AT khandankeyomarsi breakingthecycleaninsightintotheroleoferaineukaryoticcellcycles
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